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    <title>OPUS 4 Latest Documents RSS Feed</title>
    <description>Latest documents</description>
    <link>http://publikationen.stub.uni-frankfurt.de/index/index/</link>
    <pubDate>Fri, 17 May 2013 13:28:34 +0200</pubDate>
    <lastBuildDate>Fri, 17 May 2013 13:28:34 +0200</lastBuildDate>
    <item>
      <title>CD69 Is a TGF-β/1α,25-dihydroxyvitamin D3 Target Gene in Monocytes </title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29924</link>
      <description>CD69 is a transmembrane lectin that can be expressed on most hematopoietic cells. In monocytes, it has been functionally linked to the 5-lipoxygenase pathway in which the leukotrienes, a class of highly potent inflammatory mediators, are produced. However, regarding CD69 gene expression and its regulatory mechanisms in monocytes, only scarce data are available. Here, we report that CD69 mRNA expression, analogous to that of 5-lipoxygenase, is induced by the physiologic stimuli transforming growth factor-β (TGF-β) and 1α,25-dihydroxyvitamin D3 (1α,25(OH)2D3) in monocytic cells. Comparison with T- and B-cell lines showed that the effect was specific for monocytes. CD69 expression levels were increased in a concentration-dependent manner, and kinetic analysis revealed a rapid onset of mRNA expression, indicating that CD69 is a primary TGF-β/1α,25(OH)2D3 target gene. PCR analysis of different regions of the CD69 mRNA revealed that de novo transcription was initiated and proximal and distal parts were induced concomitantly. In common with 5-lipoxygenase, no activation of 0.7 kb or ~2.3 kb promoter fragments by TGF-β and 1α,25(OH)2D3 could be observed in transient reporter assays for CD69. Analysis of mRNA stability using a transcription inhibitor and a 3′UTR reporter construct showed that TGF-β and 1α,25(OH)2D3 do not influence CD69 mRNA stability. Functional knockdown of Smad3 clearly demonstrated that upregulation of CD69 mRNA, in contrast to 5-LO, depends on Smad3. Comparative studies with different inhibitors for mitogen activated protein kinases (MAPKs) revealed that MAPK signalling is involved in CD69 gene regulation, whereas 5-lipoxygenase gene expression was only partly affected. Mechanistically, we found evidence that CD69 gene upregulation depends on TAK1-mediated p38 activation. In summary, our data indicate that CD69 gene expression, conforming with 5-lipoxygenase, is regulated monocyte-specifically by the physiologic stimuli TGF-β and 1α,25(OH)2D3 on mRNA level, although different mechanisms account for the upregulation of each gene.</description>
      <author>Thea K. Wöbke; Andreas von Knethen; Dieter Steinhilber; Bernd L. Sorg</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29924</guid>
      <pubDate>Fri, 17 May 2013 13:28:34 +0200</pubDate>
    </item>
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      <title>Real-Time Analysis and Visualization for Single-Molecule Based Super-Resolution Microscopy</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29496</link>
      <description>Accurate multidimensional localization of isolated fluorescent emitters is a time consuming process in single-molecule based super-resolution microscopy. We demonstrate a functional method for real-time reconstruction with automatic feedback control, without compromising the localization accuracy. Compatible with high frame rates of EM-CCD cameras, it relies on a wavelet segmentation algorithm, together with a mix of CPU/GPU implementation. A combination with Gaussian fitting allows direct access to 3D localization. Automatic feedback control ensures optimal molecule density throughout the acquisition process. With this method, we significantly improve the efficiency and feasibility of localization-based super-resolution microscopy.</description>
      <author>Adel Kechkar; Deepak Nair; Mike Heilemann; Daniel Choquet; Jean-Baptiste Sibarita</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29496</guid>
      <pubDate>Fri, 03 May 2013 14:30:25 +0200</pubDate>
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      <title>Ordnung des Fachbereichs Biochemie, Chemie und Pharmazie für den Masterstudiengang Biochemie mit dem Abschluss Master of Science vom 11.02.2013 : genehmigt durch das Präsidium der Johann Wolfgang Goethe-Universität Frankfurt am 19.03.2013</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/28283</link>
      <description/>
      <author/>
      <category>other</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/28283</guid>
      <pubDate>Fri, 26 Apr 2013 12:20:31 +0200</pubDate>
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      <title>Genome-wide multi-parametric analysis of H2AX or γH2AX distributions during ionizing radiation-induced DNA damage response</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29528</link>
      <description>Background: After induction of DNA double strand breaks (DSBs), the DNA damage response (DDR) is activated. One of the earliest events in DDR is the phosphorylation of serine 139 on the histone variant H2AX (gH2AX) catalyzed by phosphatidylinositol 3-kinases-related kinases. Despite being extensively studied, H2AX distribution[1] across the genome and gH2AX spreading around DSBs sites[2] in the context of different chromatin compaction states or transcription are yet to be fully elucidated.&#13;
Materials and methods: gH2AX was induced in human hepatocellular carcinoma cells (HepG2) by exposure to 10 Gy X-rays (250 kV, 16 mA). Samples were incubated 0.5, 3 or 24 hours post irradiation to investigate early, intermediate and late stages of DDR, respectively. Chromatin immunoprecipitation was performed to select H2AX, H3 and gH2AX-enriched chromatin fractions. Chromatin-associated DNA was then sequenced by Illumina ChIP-Seq platform. HepG2 gene expression and histone modification (H3K36me3, H3K9me3) ChIP-Seq profiles were retrieved from Gene Expression Omnibus (accession numbers GSE30240 and GSE26386, respectively).&#13;
Results: First, we combined G/C usage, gene content, gene expression or histone modification profiles (H3K36me3, H3K9me3) to define genomic compartments characterized by different chromatin compaction states or transcriptional activity. Next, we investigated H3, H2AX and gH2AX distributions in such defined compartments before and after exposure to ionizing radiation (IR) to study DNA repair kinetics during DDR. Our sequencing results indicate that H2AX distribution followed H3 occupancy and, thus, the nucleosome pattern. The highest H2AX and H3 enrichment was observed in transcriptionally active compartments (euchromatin) while the lowest was found in low G/C and gene-poor compartments (heterochromatin). Under physiological conditions, the body of highly and moderately transcribed genes was devoid of gH2AX, despite presenting high H2AX levels. gH2AX accumulation was observed in 5’ or 3’ flanking regions, instead. The same genes showed a prompt gH2AX accumulation during the early stage of DDR which then decreased over time as DDR proceeded.&#13;
Finally, during the late stage of DDR the residual gH2AX signal was entirely retained in heterochromatic compartments. At this stage, euchromatic compartments were completely devoid of gH2AX despite presenting high levels of non-phosphorylated H2AX.&#13;
Conclusions: We show that gH2AX distribution ultimately depends on H2AX occupancy, the latter following H3 occupancy and, thus, nucleosome pattern. Both H2AX and H3 levels were higher in actively transcribed compartments. However, gH2AX levels were remarkably low over the body of actively transcribed genes suggesting that transcription levels antagonize gH2AX spreading. Moreover, repair processes did not take place uniformly across the genome; rather, DNA repair was affected by genomic location and transcriptional activity. We propose that higher H2AX density in euchromaticcompartments results in high relative gH2AXconcentration soon after the activation of DDR, thus favoring the recruitment of the DNA repair machinery to those compartments. When the damage is repaired and gH2AX is removed, its residual fraction is retained in the heterochromatic compartments which are then targeted and repaired at later times.</description>
      <author>Francesco Natale; Alexander Rapp; Wei Yu; Marco Durante; Gisela Taucher-Scholz; Maria Cristina Cardoso</author>
      <category>conferenceobject</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29528</guid>
      <pubDate>Fri, 26 Apr 2013 08:27:31 +0200</pubDate>
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      <title>Willkommen im Molekül-Kino : die drei Emmy-Noether-Stipendiaten am FB 14</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29523</link>
      <description/>
      <author>Stefanie Hense</author>
      <category>contributiontoperiodical</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29523</guid>
      <pubDate>Wed, 24 Apr 2013 15:59:08 +0200</pubDate>
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      <title>Analyse und Vorhersage von Kristallstrukturen tetraederförmiger Moleküle und fehlgeordneter Phasen</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29774</link>
      <description>Die Kristallstrukturen tetraederförmiger EX4-Moleküle mit E = C, Si, Ge, Sn, Pb und X =  F, Cl, Br, I konnten in sieben Strukturtypen eingeteilt werden. In fast allen Verbindungen nehmen die Halogenatome eine verzerrte Kugelpackung (ccp, hcp, bcc, cp) ein. Die E-Atome besetzen in den dichtesten Kugelpackungen 1/8 aller Tetraederlücken, wobei sich für diese Atome ebenfalls eine Anordnung wie für verzerrte Kugelpackungen ergibt (cp, ccp, hcp). In den anderen Fällen (bcc, cp für die Anordnung der Halogenatome) ergibt sich für die Anordnung der E-Atome selbst ebenfalls eine verzerrte Kugelpackung (bcc, s). Dabei steht s für die Anordnung der E-Atome analog der Schwefelatome im Pyrit (FeS2). Jeder Strukturtyp unterscheidet sich in der Art der kürzesten Halogen-Halogen-Wechselwirkungen. Die in der Literatur für halogenierte organische Verbindungen beschriebenen Typen der Wechselwirkung lassen sich auch bei den EX4-Verbindungen finden. Die E-X-X-Winkel liegen in einem Bereich von 80-100° und 130-160° und sind damit etwas kleiner als für die halogenierten organischen Verbindungen. Mit Hilfe von Gitterenergieminimierungen konnten diverse potentielle Polymorphe für die EX4-Verbindungen vorhergesagt werden.&#13;
Eine vollständige Kristallstrukturvorhersage wurde für SiBr4 durchgeführt. Für diese Vorhersage wurden die Van-der-Waals-Parameter neu bestimmt. Dazu wurde das Br-Br-Potential mit Hilfe von Vergleichsrechnungen an den beiden experimentellen Strukturen  des  GeBr4  in den Raumgruppentypen Pa3, Z = 8 (s/ccp), und P21/c, Z = 4 (hcp/hcp), optimiert. Für die Vorhersage des SiBr4 konnten zwei der vorhergesagten Strukturen durch extern durchgeführte Kristallisationsexperimente bestätigt werden. Eine Hochtemperaturmodifikation kristallisiert oberhalb von 168K im Raumgruppentyp Pa3, Z = 8 im Strukturtyp s/ccp. Diese Struktur konnte bei der Vorhersage auf Rang 9 gefunden werden. Die Tieftemperaturmodifikation, die unterhalb von 168K vorliegt, kristallisiert im Raumgruppentyp P21/c, Z = 4 (Strukturtyp hcp/hcp). Diese Struktur hat Rang 4 der Vorhersage. Die vorhergesagten und experimentellen Strukturen zeigen nur geringe Abweichungen voneinander.&#13;
Für die tetraederförmigen E(CH3)4-Moleküle wurden für Tetramethylsilan und Tetramethylgerman vollständige Kristallstrukturvorhersagen durchgeführt. Die energetisch günstigste Struktur ist für beide Verbindungen im Raumgruppentyp Pa3 mit Z = 8 zu finden. Die energetisch zweitgünstigste Struktur hat den Raumgruppentyp Pnma mit Z = 4. Für Tetramethylsilan konnten die Strukturen mit Rang 1 und 2 experimentell bestätigt werden. Eine Hochdruckmodifikation des Tetramethylsilans kristallisiert im Raumgruppentyp Pa3 mit Z = 8. Diese Struktur entspricht der berechneten energetisch günstigsten Struktur auf Rang eins. Ihr konnte der Strukturtyp s/ccp zugeordnet werden. Mit Tieftemperatur-Röntgenpulverbeugungsexperimenten konnte eine Tieftemperaturmodifikation bei T = 100 K im Raumgruppentyp Pnma, Z = 4, mit Strukturtyp ccp/hcp gefunden werden. &#13;
Gitterenergieberechnungen wurden für die Strukturanalysen von drei fehlgeordneten Phasen eingesetzt. Experimentell bestimmte Kristallstrukturen von Azulen und Pigment Red 194 haben den Raumgruppentyp P21/c, Z = 2. Die Moleküle befinden sich dabei auf einer Punktlage mit Inversionssymmetrie. Da beide Moleküle kein Inversionszentrum aufweisen, kommt es zu einer Orientierungsfehlordnung. Für die rechnerische Analyse der Fehlordnung wurden jeweils sechs geordnete Modelle ausgehend von den fehlgeordneten Strukturen erstellt, die möglichst wenige Moleküle pro Elemenarzelle aufweisen sollten. Gitterenergieberechnungen und die Auswertung der Boltzmann-Verteilung zeigten, dass in bei beiden Kristallstrukturen eine statistische Fehlordnung der Moleküle vorliegt, die sich aus mehreren geordneten Modellen aufbauen lässt. Bei Azulen ist eine geordnete Struktur im Raumgruppentyp Pa, Z = 4, energetisch etwas günstiger als die anderen Modell. Für Pigment Red 194 zeigte sich, dass die Fehlordnung unter der Annahme, dass nur die berechneten Modelle die fehlgeordnete Struktur bilden, mit über 99%iger Wahrscheinlichkeit aus den vier energetisch günstigsten Modellen Pc, Z = 2, P21, Z = 2,  P21/c, Z = 4 und Pc, Z = 4 besteht.&#13;
Die dritte untersuchte fehlgeordnete Struktur ist die des Natrium-p-chlorphenylsulfonat-Monohydrats. Die Fehlordnung bezieht sich hier nur auf die Phenylringe, die dort mit einer Besetzung von 50% zueinander senkrecht stehen. Mit Hilfe der Order-Disorder-Theorie konnten zwei geordnete Modelle im Raumgruppentyp P21/c und ein weiteres geordnetes Modell im Raumgruppentyp C1c1 (Z = 16, Z'= 2) aufgestellt werden. Gitterenergieminimierungen dieser Modelle zeigten, dass sich die Fehlordnung statistisch aus allen drei Modellen zusammensetzt. Das energetisch günstigste geordnete Modell im Raumgruppentyp P21/c, Z = 8 (Z' = 2), konnte als verzwillingte Struktur aus Einkristalldaten bestätigt werden.</description>
      <author>Alexandra Kerstin Wolf</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29774</guid>
      <pubDate>Fri, 12 Apr 2013 08:26:06 +0200</pubDate>
    </item>
    <item>
      <title>Pulsed EPR characterization of membrane transport protein complexes</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29735</link>
      <description>Pulsed electron–electron double resonance (PELDOR) spectroscopy is a powerful tool for measuring nanometer distances in spin-labeled systems and recently is increasingly applied to membrane proteins. However, after reconstitution of labeled proteins into liposomes, spin labels often exhibit a much faster transversal relaxation (Tm) than in detergent micelles, thus limiting application of the method in lipid bilayers. In the first part of the thesis, optimization of transversal relaxation in phospholipid membranes was systematically investigated by use of spin-labeled derivatives of stearic acid and phosphatidylcholine as well as spin-labeled derivatives of the channel-forming peptide gramicidin A under the conditions typically employed for PELDOR distance measurements. Our results clearly show that dephasing due to instantaneous diffusion that depends on dipolar interaction among electron spins is an important contributor to the fast echo decay in cases of high local concentrations of spin labels in membranes. The main difference between spin labels in detergent micelles and membranes is their local concentration. Consequently, avoiding spin aggregation and suppressing instantaneous diffusion is the key step for maximizing PELDOR sensitivity in lipid membranes. Even though proton spin diffusion is an important relaxation mechanism, only in samples with low local concentrations does deuteration of acyl chains and buffer significantly prolong Tm. In these cases, values of up to 7 μs have been achieved. Furthermore, our study revealed that membrane composition and labeling position in the membrane can also affect Tm, either by promoting the segregation of spin-labeled species or by altering their exposure to matrix protons. Effects of other experimental parameters including temperature (&lt;50 K), presence of oxygen, and cryoprotectant type are negligible under our experimental conditions.&#13;
In the second part of the thesis, inhomogeneous distribution of spin-labels in detergent micelles has been studied. A common approach in PELDOR is measuring the distance between two covalently attached spin labels in a macromolecule or singly-labeled components of an oligomer. This situation has been described as a spin-cluster. The PELDOR signal, however, does not only contain the desired dipolar coupling between the spin-labels of the molecule or cluster under study. In samples of finite concentration the dipolar coupling between the spin-labels of the randomly distributed molecules or spin-clusters also contributes significantly. In homogeneous frozen solutions or lipid vesicle membranes this second contribution can be considered to be an exponential or stretched exponential decay, respectively. In this study, it is shown that this assumption is not valid in detergent micelles. Spin-labeled fatty acids that are randomly partitioned into different detergent micelles give rise to PELDOR time traces which clearly deviate from stretched exponential decays. As a main conclusion a PELDOR signal deviating from a stretched exponential decay does not necessarily prove the observation of specific distance information on the molecule or cluster. These results are important for the interpretation of PELDOR experiments on membrane proteins or lipophilic peptides solubilized in detergent micelles or small vesicles, which often do not show pronounced dipolar oscillations in their time traces.&#13;
In the third part, PELDOR has been utilized to study the structural flexibility of the Toc34 GTPase homodimer, a preprotein receptor of the translocon of the outer envelope of chloroplasts (TOC). Toc34 belongs to GAD subfamily of G-proteins that are regulated and activated by nucleotide-dependent dimerization. However, the function of Toc34 dimerization is not yet fully understood. Previous structural investigations of the Toc34 dimer yielded only marginal structural changes in response to different nucleotide loads. PELDOR revealed a nucleotide-dependent transition of the dimer flexibility from a tight GDP to a flexible GTP-loaded state. Substrate-binding stabilizes the dimer in the transition state mimicked by GDP-AlFx, but induces an opening in the GDP or GTP-loaded state. Thus, the structural dynamics of bona fide GTPases induced by GTP hydrolysis is replaced by substrate-dependent dimer flexibility, which represents the regulatory mode for dimerizing GTPases.&#13;
In the fourth part of the thesis, conformational flexibility and relative orientation of the N-terminal POTRA domains of a cyanobacterial Omp85 from Anabaena sp. PCC 7120, a key component of the outer membrane protein assembly machinery, were investigated by PELDOR spectroscopy. Membrane proteins of the Omp85-TpsB superfamily are composed of a C-terminal β-barrel and a different number of N-terminal POTRA domains, three in the case of cyanobacterial Omp85. It has been suggested that the N-terminal POTRA domains (P1 and P2) might have functions in substrate recognition. Molecular dynamics (MD) simulations predicted a fixed orientation for P2 and P3 and a flexible hinge between P1 and P2. The PELDOR distances measured between the P2 and P3 POTRA domains are in good agreement with the structure determined by X-ray, and compatible with the MD simulations suggesting a fixed orientation between these domains. PELDOR constraints between the P1 and P2 POTRA domains imply a rather rigid structure with a slightly different relative orientation of these domains compared with the X-ray structure. Moreover, the large mobility predicted from MD is not observed in the frozen solution. The PELDOR results further highlight the restricted relative orientation of the POTRA domains of the Omp85-TpsB proteins as a conserved characteristic feature that might be important for the processive sliding of the unfolded substrate towards the membrane.</description>
      <author>Reza Dastvan</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29735</guid>
      <pubDate>Wed, 10 Apr 2013 09:07:58 +0200</pubDate>
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      <title>TIP47 plays a crucial role in HCV morphogenesis and release by its interaction with viral nonstructural protein 5A and host protein Rab9</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29717</link>
      <description>Hepatitis C virus (HCV) assembly and production is closely linked to lipid metabolism. Indeed, lipid droplets (LD) have been shown to serve as a platform for HCV assembly. To investigate the effect of HCV on the host cell proteome, 2D-gelelectrophoresis with subsequent MALDI-TOF mass spectrometry of HCV replicating and the corresponding control cells were done. Based on this analysis, it was found out that HCV-replicating Huh7.5 cells revealed lower amounts of TIP47 (tail interacting protein of 47kD) compared to HCV-negative cells. TIP47, a cytoplasmic sorting factor, has been shown to be associated with lipid droplets. As it is known that HCV-replication and assembly takes place at the so called ”membranous web” that is composed of LDs and rearranged ER-derived membranes, it was tempting to investigate the role of TIP47 in HCV life-cycle. Western blot analysis did reveal that overexpression of TIP47 in HCV replicating Huh7.5 cells leads to decreased amounts of the HCV core protein while the levels of non-structural protein (NS)5A and intracellular HCVgenomes are increased. Moreover, in TIP47 overproducing cells higher amounts of infectious HCV particles are secreted. Vice versa, inhibition of TIP47 expression by siRNA results in a decreased level of intracellular NS5A, increased amounts of intracellular core and less infectious viral particles in the supernatant. In addition, complete silencing of TIP47 by lentiviral transduction abolishes HCV replication that can be restored by transfection of these cells with a TIP47 expression construct. It has been shown recently that apoE binds to NS5A and that this interaction plays an important role for the HCV life cycle (Benga et al., 2010). The C-terminal part of TIP47 harbours a 4 helix bundle motif and displays high homology to the N-terminus of apoE. Therefore, we investigated the interaction of NS5A and TIP47. Confocal double immunofluorescence microscopy revealed that a fraction of NS5A colocalizes with TIP47. Coimmunoprecipitation experiments and a yeast-two-hybrid screening confirmed the interaction between NS5A and TIP47 and deletion of the N-terminal-TIP47-PAT domain abolishes this interaction. From this we conclude that the TIP47-NS5A interaction is required for virus morphogenesis. Moreover, TIP47 can bind to Rab9 and this is relevant for targeting the viral particle out of the cell. In accordance to this, TIP47 was identified to be associated to the viral particle. Mutants of TIP47 that fail to bind Rab9 reveal lower amounts and a changed distribution of the HCV core protein. Furthermore, we could see that the core staining colocalizes with subcellular structures that were identified as autophagosomes using a p62-specific antibody which is a specific autophagosome-marker. Based on this, we hypothized that destruction of the Rab9 binding domain misdirects the viral particle towards the lysosomal compartment.&#13;
For the first time it could be shown that TIP47 interacts with NS5A and is associated to the viral particle, therefore plays a crucial role for the virus morphogenesis and secretion of the viral article.&#13;
Taken together, these results indicate that TIP47 is an essential cellular factor for the life cycle of HCV Abstract and might be used as target for antiviral treatment, e.g. by targeting the NS5A-TIP47 interaction, based on small molecules that mimic the NS5A-specific sequence that binds to TIP47 which might result in a competition of the TIP47/NS5A interaction.</description>
      <author>Daniela Ploen</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29717</guid>
      <pubDate>Wed, 10 Apr 2013 08:59:52 +0200</pubDate>
    </item>
    <item>
      <title>Biochemical and structural investigations on the architecture of the F0 complex from Ilyobacter tartaricus ATP synthase</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29732</link>
      <description>The universal biological energy currency adenosine triphosphate (ATP) is synthesized by the F1Fo-ATP synthase in most living organisms. The overall structure and function of F-type ATPases is conserved in the different organisms. The F1Fo-ATP synthase consist of two domains; the soluble F1 complex has the subunit stoichiometry α3β3γδε and the membrane embedded Fo complex consists of subunits ab2c10-15 in its simplest form found in bacteria. F1 and Fo both function as reversible rotary motors that are connected by a central stalk (γε) and a peripheral stalk (b2δ).&#13;
For ATP synthesis, the electrochemical energy formed by a proton or sodium ion gradient is required. The ion translocation across the Fo subcomplex induces torque in the motor part of the enzyme (cnγε), which causes conformational changes in the α3β3 domain leading to ATP synthesis from ADP and inorganic phosphate (Pi) catalyzed in the β-subunits. ATP hydrolysis causes a reverse torque in the Fo subcomplex triggering uphill ion translocation from cytoplasm to periplasm, and the enzyme functions as an ion pump.&#13;
The ATP synthesis mechanism is well understood, since several high-resolution structures of F1 are available. In contrast, the ion translocation mechanism across the membrane, mediated by the Fo subcomplex, is not understood in its structural detail.&#13;
Subunit a and the c-ring form an ion pathway, but subunit b is needed to form an active ion translocation pathway in both H+- and Na+-dependent systems. Several high-resolution structures of c-rings have provided insights in the ion translocation mechanism. The different ion translocation models based on biochemical, biophysical and structural analysis are in agreement in the fact that ions are translocated through a periplasmic ion access pathway in subunit a to the middle of the membrane and there to the binding site of a c-subunit. After almost a whole rotation of the c-ring the ion returns into the a-c interface, where it can be released to the cytoplasm. In the different models the cytoplasmic access pathway has been proposed to be located in subunit a, at the a-c interface or within the c-ring. The driving force of torque generation has been proposed to be the pH gradient or membrane potential. Several biochemical studies show that a conserved arginine in helix four of subunit a (R226 in Ilyobacter tartaricus or R210 in Escherichia coli)plays a critical role in the ion translocation. The arginine has been proposed to function as an electrostatic separator between the cytoplasmic and periplasmic pathways and as a mediator of the ion exchange into the c-ring ion-binding site. &#13;
Structural data of a related enzyme (V1Vo-ATPase from Thermus thermophilus) has provided insight into the helical arrangement of the ion translocating subunits I and Lring (related to subunit a and the c-ring). These structures indicated a small interface between subunit I and the L-ring, and two four-helix bundles in the N-terminal domain of subunit I were proposed to build the periplasmic and cytoplasmic ion pathways. To comprehend the ion-translocation and torque generation mechanism in F1Fo-ATP synthase, structural data of an intact a-c complex is needed.&#13;
The goal of this work was to obtain structural data of subunit a, most preferably in a complex with the c-ring or additionally with subunit b. Therefore, a new purification procedure for the I. tartaricus Fo-subcomplex, heterologously expressed in E. coli cells, was established. The purified Fo was characterized biochemically and by Laserinduced liquid bead ion desorption mass spectrometry (LILBID-MS). These analyses showed that pure and completely assembled Fo containing all its subunits in the correct stoichiometry (ab2c11) was obtained. The purified Fo complex was stable at 4°C for several months and at room temperature in the presence of lipids for several weeks. A lipid analysis was performed by thin-layer chromatography (TLC) to investigate the qualitative lipid composition of I. tartaricus whole lipid extract and various I. tartaricus F1Fo isolates. The whole lipid extract contained PC, PG and PE lipids and probably cardiolipin. PC, PG and PE lipids were bound to wild type I. tartaricus F1Fo, whereas recombinant I. tartaricus F1Fo did not have any bound lipids, but was able to bind the synthetic lipids POPC and POPG if they were provided during the purification.&#13;
For subsequent structural studies the purified Fo was subjected to two-dimensional (2D) crystallization trials. Vesicles and sheets tightly packed with protein and crystals with a rare plane group for I. tartaricus c11 (p121) were obtained. The c-ring was visible in the CCD images, and immunogold-labeling revealed the presence of the His-tagged a-subunit in the reconstituted vesicles. Furthermore, atomic force microscopy (AFM) imaging showed protein densities next to the c-rings, which protruded less from the membrane (0.4±0.1 nm) than the c-ring (0.7±0.1 nm). These protein densities presumably belonged to subunit a.&#13;
Cryo-electronmicroscopy (cryo-EM) was used to collect data of the p121 crystals and a merged projection density map was calculated to 7.0 Å resolution. The unit cell of the crystals (81 × 252 Å) contained two asymmetric units with three c-rings in each and next to the c11-rings new prominent densities were visible. In each extra density up to 7 transmembrane helices were visible, belonging to the stator subunit a and/or subunit b. To elucidate whether there are conserved elements in the three extra densities non-crystallographic averaging was applied using a single-particle approach.&#13;
Six possible arrangements for the c-rings and the extra densities were identified and used for the averaging. The extra densities were enhanced only in one of the possible arrangements. The average showed a four-helix bundle and a fifth helix in close proximity to the c-ring. Two more helices were present in each position but their position was ambivalent. The data obtained in this work provides the first insight in the helical arrangement in the a-c interface of F1Fo-ATP synthase.</description>
      <author>Jonna Hakulinen</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29732</guid>
      <pubDate>Wed, 10 Apr 2013 08:33:40 +0200</pubDate>
    </item>
    <item>
      <title>A gp41 MPER-specific Llama VHH Requires a Hydrophobic CDR3 for Neutralization but not for Antigen Recognition</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29065</link>
      <description>The membrane proximal external region (MPER) of the HIV-1 glycoprotein gp41 is targeted by the broadly neutralizing antibodies 2F5 and 4E10. To date, no immunization regimen in animals or humans has produced HIV-1 neutralizing MPER-specific antibodies. We immunized llamas with gp41-MPER proteoliposomes and selected a MPER-specific single chain antibody (VHH), 2H10, whose epitope overlaps with that of mAb 2F5. Bi-2H10, a bivalent form of 2H10, which displayed an approximately 20-fold increased affinity compared to the monovalent 2H10, neutralized various sensitive and resistant HIV-1 strains, as well as SHIV strains in TZM-bl cells. X-ray and NMR analyses combined with mutagenesis and modeling revealed that 2H10 recognizes its gp41 epitope in a helical conformation. Notably, tryptophan 100 at the tip of the long CDR3 is not required for gp41 interaction but essential for neutralization. Thus bi-2H10 is an anti-MPER antibody generated by immunization that requires hydrophobic CDR3 determinants in addition to epitope recognition for neutralization similar to the mode of neutralization employed by mAbs 2F5 and 4E10.</description>
      <author>David Lutje Hulsik; Ying-ying Liu; Nika M. Strokappe; Simone Battella; Mohamed El Khattabi; Laura E. McCoy; Charles Sabin; Andreas Hinz; Miriam Hock; Pauline Macheboeuf; Alexandre M. J. J. Bonvin; Johannes P. M. Langedijk; David Davis; Anna Forsman Quigley; Marlén M. I. Aasa-Chapman; Michael S. Seaman; Alejandra Ramos; Pascal Poignard; Adrien Favier; Jean-Pierre Simorre; Robin A. Weiss; C. Theo Verrips; Winfried Weissenhorn; Lucy Rutten</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29065</guid>
      <pubDate>Tue, 12 Mar 2013 16:39:30 +0100</pubDate>
    </item>
    <item>
      <title>Super-Resolution Microscopy Reveals Specific Recruitment of HIV-1 Envelope Proteins to Viral Assembly Sites Dependent on the Envelope C-Terminal Tail</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29138</link>
      <description>The inner structural Gag proteins and the envelope (Env) glycoproteins of human immunodeficiency virus (HIV-1) traffic independently to the plasma membrane, where they assemble the nascent virion. HIV-1 carries a relatively low number of glycoproteins in its membrane, and the mechanism of Env recruitment and virus incorporation is incompletely understood. We employed dual-color super-resolution microscopy visualizing Gag assembly sites and HIV-1 Env proteins in virus-producing and in Env expressing cells. Distinctive HIV-1 Gag assembly sites were readily detected and were associated with Env clusters that always extended beyond the actual Gag assembly site and often showed enrichment at the periphery and surrounding the assembly site. Formation of these Env clusters depended on the presence of other HIV-1 proteins and on the long cytoplasmic tail (CT) of Env. CT deletion, a matrix mutation affecting Env incorporation or Env expression in the absence of other HIV-1 proteins led to much smaller Env clusters, which were not enriched at viral assembly sites. These results show that Env is recruited to HIV-1 assembly sites in a CT-dependent manner, while Env(ΔCT) appears to be randomly incorporated. The observed Env accumulation surrounding Gag assemblies, with a lower density on the actual bud, could facilitate viral spread . Keeping Env molecules on the nascent virus low may be important for escape from the humoral immune response, while cell-cell contacts mediated by surrounding Env molecules could promote HIV-1 transmission through the virological synapse.</description>
      <author>Walter Muranyi; Sebastian Malkusch; Barbara Müller; Mike Heilemann; Hans-Georg Kräusslich</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29138</guid>
      <pubDate>Tue, 12 Mar 2013 16:22:50 +0100</pubDate>
    </item>
    <item>
      <title>Perfluoraryl-substituierte Borate und Borane zur Hydroborierung und Katalyse von Diels-Alder-Reaktionen</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29143</link>
      <description>Lewis-azide Organoborverbindungen finden Verwendung als Anionensensoren und als (Co)katalysatoren in der Metallocen-vermittelten Olefinpolymerisation bzw. in elektrocyclischen Reaktionen. Mit Lewis-Basen, die sterisch anspruchsvolle Reste tragen, können sie keine stabilen Addukte ausbilden. Solche Systeme werden als „frustrierte Lewispaare“ (FLPs) bezeichnet. Diese zeigen eine besondere kooperative Reaktivität gegenüber kleinen Molekülen und haben sich insbesondere in der metallfreien Aktivierung molekularen Wasserstoffs bewährt. Ein Ziel dieser Arbeit war die Entwicklung einer kostengünstigen, ungefährlichen und einfachen Synthese von (C6F5)2BH („Piers' Boran“). Dieses stark elektrophile Reagenz wird in der FLP-Chemie eingesetzt und monohydroboriert selektiv terminale C≡C-Funktionen. Die literaturbekannten Darstellungsmethoden dieses Borans sind präparativ aufwendig oder erfordern kostspielige Startmaterialien. Die Hydrid-Abstraktion aus dem [(C6F5)2BH2]−-Anion, welches aus einer Eintopfreaktion zwischen BH3·SMe2, C6F5MgBr und ClSiMe3 erhalten wurde und je nach Aufarbeitung in der Zusammensetzung [Mg2(Et2O)3Br2Cl][(C6F5)2BH2] bzw. [Mg(Et2O)2][(C6F5)2BH2]2 kristallisiert, bietet eine Methode zur insitu-Präparation von Piers' Boran. Es kann mit terminalen Alkinen als Monohydroborierungsprodukt oder mit Dimethylsulfid als Lewis-Säure-Base-Addukt abgefangen werden (Abbildung 1). Zusätzlich sind sowohl das Salz [Mg2(Et2O)3Br2Cl][(C6F5)2BH2] als auch das Addukt (C6F5)2BH·SMe2 geeignete Präkursoren für die literaturbekannten FLPs I und II...Mit dem Ziel der Synthese eines Methylen-verbrückten Boran-Phosphans zur H2-Aktivierung wurde der Borinsäureester (C6F5)2BOEt mit dem Lithiumorganyl LiCH2PtBu2 umgesetzt. Dies lieferte nicht die Zielverbindung (C6F5)2BCH2PtBu2, sondern in sehr selektiver Reaktion das bicyclische Phosphoniumborat (EtO)(C6F5)B(CH2)(C6F4)PtBu2 ((III)OEt), welches mit HCl quantitativ zum Chlorid-Addukt (III)Cl reagiert (Abbildung 2). Dadurch wird am (chiralen) Borzentrum eine bessere Abgangsgruppe eingeführt und die luftund wasserstabile Spezies (III)OEt aktiviert. Der Fluorierungsgrad in (III)Cl kann durch Austausch des exocyclischen C6F5-Restes gegen eine Phenylgruppe oder durch eine F/H- bzw. F/tBu-Substitution am verbrückenden C6F4-Ring variiert werden. Nach Ersatz einer tBu-Funktion am Phosphoratom gegen eine Methylgruppe wurde ein zweites Chiralitätszentrum in das Molekülgerüst des Phosphoniumborats eingeführt. Mit Silbersalzen schwach koordinierender Anionen (AgA) reagiert (III)Cl quantitativ zu den entsprechenden Addukten (III)A (A = Acetat, Trifluoracetat, Nitrat, Tosylat, Triflat). Ungeladene Donoren (Do) verdrängen den Triflat-Rest in (III)OTf und führen zu den Salzen [(III)Do]+[OTf]− (Do = OPEt3, Pyridin, H2O)...Das freie Boran [III]+ existiert nur in Gegenwart des sehr schwach koordinierenden Anions [Al[OC(CF3)3]4]–. Mit einer Gutmann-Akzeptornummer (AN) von AN = 87.3 ist es eine stärkere Lewis-Säure als die ungeladene Verbindung (C6F5)3B (AN = 80.0). Auch die – im Vergleich zu (C6F5)3B·Do – kürzeren B–O/N-Bindungslängen in [(III)Do][OTf] (Do = OPEt3, Pyridin, H2O) bestätigen diese Beobachtung. Sowohl die freie Lewis-Säure [III]+ als auch ihr Triflat-Addukt (III)OTf katalysieren die Diels-Alder-Reaktion zwischen Cyclopentadien und 2,5-Dimethyl-,4-benzochinon. Die Reaktion läuft in Gegenwart von [III]+ schneller ab als in Anwesenheit von (III)OTf. Dennoch hat das Triflat-Addukt gegenüber [III]+ den Vorteil, dass im Laufe der Cycloaddition keine konkurrierende Polymerisation des Cyclopentadiens auftritt.</description>
      <author>Anna Schnurr</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29143</guid>
      <pubDate>Tue, 12 Mar 2013 08:28:31 +0100</pubDate>
    </item>
    <item>
      <title>	HuR promotes tumorigenic characteristics in hepatocellular carcinoma</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29062</link>
      <description>In the absence of apparent mutations, alteration of gene expression patterns represents the key mechanism by which normal cells evolve to cancer cells.&#13;
Gene expression is tightly regulated by posttranscriptional processes. Within this context, RNA-binding proteins (RBPs) represent fundamental factors, since they control mechanisms, such as mRNA-stabilization, -translation and -degradation. Human antigen R (HuR) was among the first RBPs that have been directly associated to carcinogenesis. HuR modulates the stability and translation of mRNAs which encode proteins facilitating various ‘hallmarks of cancer’, namely proliferation, evasion of growth suppression, angiogenesis, cell death resistance, invasion and metastasis. Furthermore, it is well established that tumor-promoting inflammation contributes to tumorigenesis. In this process, monocytes are attracted to the site of the tumor and educated towards a tumor-promoting macrophage phenotype. While HuR has been extensively studied in various tumor cell types, little is known about HuR in hepatocellular carcinoma (HCC). Thus, the aim of my work was to characterize the contribution of HuR to the development of cancer characteristics in HCC. I was particularly interested to investigate if HuR facilitates tumor-promoting inflammation, since a role for HuR has not been described in this context. To this end, I depleted HuR in HepG2 cells (HuR k/d) and used a co-culture model of HepG2 tumor spheroids and infiltrating monocytes to study the impact of HuR on the tumor microenvironment. I could show that depletion of HuR resulted in the reduction of cell numbers. Additionally, the expression of proliferation marker KI-67 and proto-oncogene c-Myc was reduced, supporting a proliferative role of HuR. Furthermore, exposure to cytotoxic staurosporine elevated apoptosis in HuR k/d cells compared to control cells. Concomitantly, the expression of the anti-apoptotic mediator B-cell lymphoma protein-2 (Bcl-2) was markedly reduced in the HuR k/d cells, pointing to an involvement of HuR in cell survival processes.&#13;
Accordingly, a pro-survival function of HuR was also observed in tumor spheroids, since HuR k/d spheroids exhibited a larger necrotic core region at earlier time points and showed elevated numbers of dead cells compared to control (Ctr.) spheroids. Interestingly, HuR k/d spheroids  isplayed reduced numbers of infiltrated macrophages, suggesting that HuR contributes to a tumor-promoting, inflammatory microenvironment by recruiting monocytes/macrophages to the tumor site. Aiming at identifying HuR-regulated factors responsible for the recruitment of monocytes, I found reduced levels of the chemokine interleukin 8 (IL-8) in supernatants of HuR k/d spheroids, supporting a critical involvement of HuR in the chemoattraction of monocytes. Analyzing supernatants of co-cultures of macrophages and HuR k/d or Ctr. spheroids revealed additional differences in chemokine secretion patterns. Interestingly, protein levels of many chemokines were elevated in co-cultures of HuR k/d spheroids compared to control co-cultures. Albeit enhanced chemokine secretion was observed, less monocytes are recruited into HuR k/d spheroids, further underlining the necessity of HuR in cancer related monocyte/macrophage attraction and infiltration. Differences between chemokine profiles of mono- and co-cultured spheroids could be attributable to changes in spheroid-derived chemokines as a result of the crosstalk with the immune cells. Provided the chemokines originate from monocytes/macrophages, the different secretion patterns suggest that HuR contributes to the modulation of the functional phenotype of infiltrated macrophages, since the tumorenvironment is critically involved in the shaping of macrophage phenotypes. Regions of low-oxygen (hypoxia) represent another critical feature of tumors. Therefore, I next analyzed the impact of HuR on the hypoxic response. Loss of HuR attenuated hypoxia-inducible factor (HIF) 2α expression after exposure to hypoxia, while HIF-1α protein levels remained unaltered. Considering previous results of our group, showing that HIF-2α depletion (HIF-2α k/d) resulted in the enhanced expression of HIF-1α protein, I aimed to determine the involvement of HuR in the compensatory upregulation of HIF-1α protein in HIF-2α k/d cells. I could demonstrate that not only total HuR protein levels, but specifically cytoplasmic HuR was elevated in HIF-2α depleted cells pointing to enhanced HuR activity. Silencing HuR in HIF-2α deficient cells attenuated enhanced HIF-1α protein expression, thus confirming a direct role of HuR in the compensatory upregulation of HIF-1α. This  as also reflected on HIF-1α target gene expression. I further investigated the mechanism underlying the compensatory HIF-1α expression in HIF-2α deficient cells. Analyzing HIF-1α mRNA expression, I excluded enhanced HIF1-α transcription and stability to account for elevated HIF-1α expression in HIF-2α k/d cells. HIF-1α promoter activity assays confirmed the mRNA data. Furthermore, HIF-1α protein half-life was not elevated in HIF-2α k/d cells compared to control cells, indicating that HIF-1α protein stability is not altered in HIF-2α k/d cells. Analysis of the association of HIF-1α with the translational machinery using polysomal fractionation finally revealed an increased  istribution of HIF-1α mRNA in the heavier polysomal fractions in HIF-2α k/d cells compared to control cells. Since augmented ribosome occupancy is an indicator for more efficient translation, I propose enhanced HIF-1α translation as underlying principle of the compensatory increase in HIF-1α protein levels in HIF-2α k/d cells. In summary, my results demonstrate that HuR is critical for the development of cancer characteristics in HCC. Future work analyzing the impact of HuR on tumor-promoting inflammation, specifically macrophage attraction and activation could provide new  trategies to inhibit macrophage-driven tumor progression. Furthermore, I provide evidence that HuR contributes to the hypoxic response by regulating the expression of HIF-1α and HIF-2α. Targeting single HIF-isoforms for tumor therapy should be carefully considered, because of their compensatory regulation when one α-subunit is depleted. Thus, therapeutic strategies targeting factors such as HuR that control both α-subunits and at the same time prevent compensation might be more promising.</description>
      <author>Kathrin Schulz</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/29062</guid>
      <pubDate>Tue, 05 Mar 2013 09:14:46 +0100</pubDate>
    </item>
    <item>
      <title>Keeping track of worm trackers</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/25950</link>
      <description>C. elegans is used extensively as a model system in the neurosciences due to its well defined nervous system. However, the seeming simplicity of this nervous system in anatomical structure and neuronal connectivity, at least compared to higher animals, underlies a rich diversity of behaviors. The usefulness of the worm in genome-wide mutagenesis or RNAi screens, where thousands of strains are assessed for phenotype, emphasizes the need for computational methods for automated parameterization of generated behaviors. In addition, behaviors can be modulated upon external cues like temperature, O2 and CO2 concentrations, mechanosensory and chemosensory inputs. Different machine vision tools have been developed to aid researchers in their efforts to inventory and characterize defined behavioral “outputs”. Here we aim at providing an overview of different worm-tracking packages or video analysis tools designed to quantify different aspects of locomotion such as the occurrence of directional changes (turns, omega bends), curvature of the sinusoidal shape (amplitude, body bend angles) and velocity (speed, backward or forward movement).</description>
      <author>Steven J. Husson; Wagner Steuer Costa; Cornelia Schmitt; Alexander Gottschalk</author>
      <category>bookpart</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/25950</guid>
      <pubDate>Thu, 28 Feb 2013 14:36:01 +0100</pubDate>
    </item>
    <item>
      <title>Elektronentransfer zwischen CdSe-Quantenpunkten und Methylviologen</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/28999</link>
      <description>Es wurde die Photodynamik freier kolloidaler CdSe Quantenpunkte sowie die Elektronentransfer(ET)-Dynamik im System bestehend aus CdSe Quantenpunkten und adsorbiertem Methylviologen mit Hilfe der Femtosekunden-Laserspektroskopie im sichtbaren Spektralbereich untersucht. Die freien CdSe Quantenpunkte wiesen eine multiphasische Rekombinationsdynamik der photoinduzierten Exzitonen auf, was durch das Vorhandensein von Quantenpunkten mit unterschiedlichem Passivierungsgrad innerhalb einer Quantenpunktprobe erklärt wurde. Sowohl die Rekombinationsdynamik des Exzitons als auch die Intraband-Relaxation von Elektron und Loch besaßen eine Abhängigkeit von der Partikelgröße. Die 1P-1S-Relaxationzeit des Elektrons betrug in Partikeln mit Durchmessern von 3 nm und 6,3 nm 0,12 ps bzw. 0,24 ps, woraus sich Energieverlustraten von 1,0 eV/ps und 3,8 eV/ps berechnen ließen. Die sehr schnelle Natur der 1P-1S-Relaxation und die gefundene Größenabhängigkeit stehen im Einklang mit dem vermuteten Auger-artigen Energietransfer vom hochangeregten Elektron auf das Loch. Durch diesen Prozess kann das theoretisch vorhergesagte „phonon bottleneck“ effizient umgangen werden. Zudem konnte eine größenabhängige Biexziton-Bindungsenergie zwischen 40 meV und 28 meV ermittelt werden. Die Untersuchung von Multiexzitonen in CdSe Quantenpunkten zeigte einen schnellen Zerfallskanal. Es handelt es sich um die Auger-Rekombination. Die Rekombination nach 1P-Anregung wurde in Form von sequenziellen Schritten N, N-1, N-2,..., 1 interpretiert. Für das System bestehend aus CdSe Quantenpunkten und adsorbiertem Methylviologen wurde war eine Zunahme der ET-Rate bei steigender Akzeptorkonzentration zu beobachten, die mit der Zunahme von Akzeptorzuständen erklärt werden kann. Ferner wurde eine maximale ET-Rate erreicht, die bei einer weiteren Erhöhung der Akzeptorkonzentration nicht überschritten wird. In weiteren Versuchsreihen konnte gezeigt werden, dass die Größe der Partikel einen Einfluss auf den ET-Prozess zwischen Quantenpunkt und Methylviologen hat. Eine kombinierte Studie, in der sowohl das Quantenpunkt/Methylviologen-Verhältnis als auch die Quantenpunktgröße variiert wurde, verdeutlichte, dass eine Verkleinerung der Partikel zu einem Anstieg der ET-Rate führt. Die Variation der Partikelgröße geht mit einer Veränderung der Triebkraft der ET-Reaktion im gekoppelten System einher. Der gefundene Zusammenhang zwischen der Triebkraft der Reaktion und der ET-Rate ist gut mit der Marcus-Theorie vereinbar. In einer Serie von Experimenten am Quantenpunkt/Methylviologen ET-System wurde die Anregpulsenergie variiert, um den Einfluss von Multiexzitonen auf den Elektronentransfer zu untersuchen. Es zeigte sich, dass nach Mehrfachanregung der Quantenpunkte die Separation von bis zu vier Elektron-Loch-Paaren möglich ist. Für den Elektronentransfer im untersuchten ET-System wurde eine ET-Zeit von ca. 200 fs ermittelt. Diese ist deutlich kürzer als die gefundenen Auger-Rekombinationszeiten, die sich zwischen 1,5 ps und 5 ps bewegen. In einer Studie an CdSe/CdS Kern/Schale Partikeln wurde der Einfluss einer passivierenden anorganischen Schale auf den ET-Prozess untersucht. Bei der gewählten Heterostruktur handelte es sich um Typ I Kern/Schale Partikel, in denen sowohl Elektron und Loch hauptsächlich im Kern eingeschlossen sind. Es wurde ein exponentieller Abfall der ET-Rate mit wachsender Schalendicke beobachtet, weshalb davon auszugehen ist, dass die CdS-Schale als elektronische Barriere wirkt, durch die das photoangeregte Elektron tunneln muss, um mit dem Akzeptor reagieren zu können. Schließlich wurde der Einfluss des Elektronentransfers im ET-System auf die Entstehung von Phononen untersucht. Sowohl in freien Quantenpunkten als auch im gekoppelten System konnte das LO sowie das LA Phonon beobachtet werden, wobei das LA Phonon im gekoppelten System stark unterdrückt ist. Im Falle der freien Quantenpunkte sind die beobachteten Oszillationen eine Folge der Frequenzmodulation der Absorption des angeregten Zustandes. Mit Hilfe des Huang-Rhys-Parameters ließ sich ermitteln, wie stark in freien Quantenpunkten das LO Phonon an das Exziton gekoppelt ist. Der berechnete Huang-Rhys-Parameter betrug 0,012. Im Falle des gekoppelten Systems weist die spektrale Signatur der kohärenten Oszillationen darauf hin, dass diese durch die Frequenzmodulation der linearen QP-Absorption verursacht werden. Im Falle des gekoppelten Systems sind die beobachteten Phononen nicht an das Exziton sondern an die ET-Reaktion gekoppelt, d. h. der ET selbst induziert Gitterschwingungen im Reaktionsprodukt. Der berechnete Huang-Rhys-Parameter, der die ET-Phonon-Kopplung beschreibt, berechnete sich ebenfalls zu 0,012, was verdeutlicht, dass die ET-Phonon-Kopplung ähnlich stark wie die Exziton-Phonon-Kopplung ist. Mit Hilfe der spektralen Abhängigkeit der Oszillationen in freien Quantenpunkten und im gekoppelten System ließ sich eine Biexziton-Bindungsenergie von 35 meV berechnen.</description>
      <author>Lars Dworak</author>
      <category>doctoralthesis</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/28999</guid>
      <pubDate>Thu, 28 Feb 2013 12:36:27 +0100</pubDate>
    </item>
    <item>
      <title>Actomyosin-based Self-organization of cell internalization during C. elegans gastrulation</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27784</link>
      <description>Background: Gastrulation is a key transition in embryogenesis; it requires self-organized cellular coordination, which has to be both robust to allow efficient development and plastic to provide adaptability. Despite the conservation of gastrulation as a key event in Metazoan embryogenesis, the morphogenetic mechanisms of self-organization (how global order or coordination can arise from local interactions) are poorly understood.&#13;
Results: We report a modular structure of cell internalization in Caenorhabditis elegans gastrulation that reveals mechanisms of self-organization. Cells that internalize during gastrulation show apical contractile flows, which are correlated with centripetal extensions from surrounding cells. These extensions converge to seal over the internalizing cells in the form of rosettes. This process represents a distinct mode of monolayer remodeling, with gradual extrusion of the internalizing cells and simultaneous tissue closure without an actin purse-string. We further report that this self-organizing module can adapt to severe topological alterations, providing evidence of scalability and plasticity of actomyosin-based patterning. Finally, we show that globally, the surface cell layer undergoes coplanar division to thin out and spread over the internalizing mass, which resembles epiboly.&#13;
Conclusions: The combination of coplanar division-based spreading and recurrent local modules for piecemeal internalization constitutes a system-level solution of gradual volume rearrangement under spatial constraint. Our results suggest that the mode of C. elegans gastrulation can be unified with the general notions of monolayer remodeling and with distinct cellular mechanisms of actomyosin-based morphogenesis.</description>
      <author>Christian Pohl; Michael Tiongson; Julia L. Moore; Anthony Santella; Zhirong Bao</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27784</guid>
      <pubDate>Thu, 28 Feb 2013 10:27:13 +0100</pubDate>
    </item>
    <item>
      <title>Artificial environments for the co-translational stabilization of cell-free expressed proteins</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27959</link>
      <description>An approach for designing individual expression environments that reduce or prevent protein aggregation and precipitation is described. Inefficient folding of difficult proteins in unfavorable translation environments can cause significant losses of overexpressed proteins as precipitates or inclusion bodies. A number of chemical chaperones including alcohols, polyols, polyions or polymers are known to have positive effects on protein stability. However, conventional expression approaches can use such stabilizing agents only post-translationally during protein extraction and purification. Proteins that already precipitate inside of the producer cells cannot be addressed. The open nature of cell-free protein expression systems offers the option to include single chemicals or cocktails of stabilizing compounds already into the expression environment. We report an approach for systematic screening of stabilizers in order to improve the solubility and quality of overexpressed proteins co-translationally. A comprehensive list of representative protein stabilizers from the major groups of naturally occurring chemical chaperones has been analyzed and their concentration ranges tolerated by cell-free expression systems have been determined. As a proof of concept, we have applied the method to improve the yield of proteins showing instability and partial precipitation during cell-free synthesis. Stabilizers that co-translationally improve the solubility and functional folding of human glucosamine 6-phosphate N-acetyltransferase have been identified and cumulative effects of stabilizers have been studied.</description>
      <author>Lei Kai; Volker Dötsch; Ralf Kaldenhoff; Frank Bernhard</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27959</guid>
      <pubDate>Mon, 25 Feb 2013 12:27:48 +0100</pubDate>
    </item>
    <item>
      <title>IAP-IAP complexes required for apoptosis resistance of C. trachomatis-infected cells</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27239</link>
      <description>Host cells infected with obligate intracellular bacteria Chlamydia trachomatis are profoundly resistant to diverse apoptotic stimuli. The molecular mechanisms underlying the block in apoptotic signaling of infected cells is not well understood. Here we investigated the molecular mechanism by which apoptosis induced via the tumor necrosis factor (TNF) receptor is prevented in infected epithelial cells. Infection with C. trachomatis leads to the up-regulation of cellular inhibitor of apoptosis (cIAP)-2, and interfering with cIAP-2 up-regulation sensitized infected cells for TNF-induced apoptosis. Interestingly, besides cIAP-2, cIAP-1 and X-linked IAP, although not differentially regulated by infection, are required to maintain apoptosis resistance in infected cells. We detected that IAPs are constitutively organized in heteromeric complexes and small interfering RNA-mediated silencing of one of these IAPs affects the stability of another IAP. In particular, the stability of cIAP-2 is modulated by the presence of X-linked IAP and their interaction is stabilized in infected cells. Our observations suggest that IAPs are functional and stable as heteromers, a thus far undiscovered mechanism of IAP regulation and its role in modulation of apoptosis.</description>
      <author>Krishnaraj Rajalingam; Manu Sharma; Nicole Paland; Robert Hurwitz; Oliver Thieck; Monique Oswald; Nikolaus Machuy; Thomas Rudel</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27239</guid>
      <pubDate>Fri, 22 Feb 2013 10:58:29 +0100</pubDate>
    </item>
    <item>
      <title>Role for caspase-2 during pore-forming toxin-mediated apoptosis</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27238</link>
      <description/>
      <author>Gergely Imre; Krishnaraj Rajalingam</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27238</guid>
      <pubDate>Fri, 22 Feb 2013 10:40:58 +0100</pubDate>
    </item>
    <item>
      <title>GCC2011 – 25 years of computational chemistry meetings</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27237</link>
      <description/>
      <author>Frank Oellien; Uli Fechner; Thomas Engel</author>
      <category>conferenceobject</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27237</guid>
      <pubDate>Fri, 22 Feb 2013 09:41:42 +0100</pubDate>
    </item>
    <item>
      <title>Design of dual ligands using excessive pharmacophore query alignment</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27236</link>
      <description>Oral presentation&#13;
&#13;
Dual- or multi-target ligands have gained increased attention in the past years due to several advantages, including more simple pharmacokinetic and phamarcodynamic properties compared to a combined application of several drugs. Furthermore multi-target ligands often possess improved efficacy [1]. We present a new approach for the discovery of dual-target ligands using aligned pharmacophore models combined with a shape-based scoring. Starting with two sets of known active compounds for each target, a number of different pharmacophore models is generated and subjected to pairwise graph-based alignment using the Kabsch-Algorithm [2,3]. Since a compound may be able to bind to different targets in different conformations, the algorithm aligns pairs of pharmacophore models sharing the same features which are not necessarily at the exactly same spatial distance. Using the aligned models, a pharmacophore search on a multi-conformation-database is performed to find compounds matching both models. The potentially “dual” ligands are scored by a shape-based comparison with the known active molecules using ShaEP [4].&#13;
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Using this approach, we performed a prospective fragment-based virtual screening for dual 5-LO/sEH inhibitors. Both enzymes play an important role in the arachidonic acid cascade and are involved in inflammatory processes, pain, cardiovascular diseases and allergic reactions [5,6]. Beside several new selective inhibitors we were able to find a compound inhibiting both enzymes in low micromolar concentrations. The results indicate that the idea of aligned pharmacophore models can be successfully employed for the discovery of dual-target ligands.</description>
      <author>Daniel Moser; Joanna Wisniewska; Steffen Hahn; Estel la Buscató; Franca-Maria Klingler; Janosch Achenbach; Bettina Hofmann; Dieter Steinhilber; Ewgenij Proschak</author>
      <category>conferenceobject</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27236</guid>
      <pubDate>Fri, 22 Feb 2013 09:35:23 +0100</pubDate>
    </item>
    <item>
      <title>Open Access 7th German Conference on Chemoinformatics: 25 CIC-Workshop : Goslar, Germany. 6-8 November 2011 ; meeting abstracts</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27200</link>
      <description/>
      <author/>
      <category>conferenceobject</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/27200</guid>
      <pubDate>Fri, 22 Feb 2013 09:24:08 +0100</pubDate>
    </item>
    <item>
      <title>IAPs as E3 ligases of Rac1 : shaping the move</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/28935</link>
      <description>Inhibitors of Apoptosis Proteins (IAPs) are well-studied E3 ubiquitin ligases predominantly known for regulation of apoptosis. We uncovered that IAPs can function as a direct E3 ubiquitin ligase of RhoGTPase Rac1. cIAP1 and XIAP directly conjugate polyubiquitin chains to Lysine 147 of activated Rac1 and target it for proteasomal degradation. Consistently, loss of these IAPs by various strategies led to stabilization of Rac1 and mesenchymal mode of migration in tumor cells. IAPs also regulate Rac1 degradation upon RhoGDI1 depletion and CNF1 toxin treatment. Our observations revealed an evolutionarily conserved role of IAPs in regulating Rac1 stability shedding light on to the mechanisms behind ubiquitination–dependent inactivation of Rac1 signaling.</description>
      <author>Tripat Kaur Oberoi-Khanuja; Krishnaraj Rajalingam</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/28935</guid>
      <pubDate>Thu, 21 Feb 2013 16:20:00 +0100</pubDate>
    </item>
    <item>
      <title>Study of E. coli Hfq's RNA annealing acceleration and duplex destabilization activities using substrates with different GC-contents</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/25761</link>
      <description>Folding of RNA molecules into their functional three-dimensional structures is often supported by RNA chaperones, some of which can catalyse the two elementary reactions helix disruption and helix formation. Hfq is one such RNA chaperone, but its strand displacement activity is controversial. Whereas some groups found Hfq to destabilize secondary structures, others did not observe such an activity with their RNA substrates. We studied Hfq’s activities using a set of short RNAs of different thermodynamic stabilities (GC-contents from 4.8% to 61.9%), but constant length. We show that Hfq’s strand displacement as well as its annealing activity are strongly dependent on the substrate’s GC-content. However, this is due to Hfq’s preferred binding of AU-rich sequences and not to the substrate’s thermodynamic stability. Importantly, Hfq catalyses both annealing and strand displacement with comparable rates for different substrates, hinting at RNA strand diffusion and annealing nucleation being rate-limiting for both reactions. Hfq’s strand displacement activity is a result of the thermodynamic destabilization of the RNA through preferred single-strand binding whereas annealing acceleration is independent from Hfq’s thermodynamic influence. Therefore, the two apparently disparate activities annealing acceleration and duplex destabilization are not in energetic conflict with each other.</description>
      <author>Martina Doetsch; Sabine Stampfl; Boris Fürtig; Mads Beich-Frandsen; Krishna Saxena; Meghan Lybecker; Renée Schroeder</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/25761</guid>
      <pubDate>Thu, 21 Feb 2013 09:41:28 +0100</pubDate>
    </item>
    <item>
      <title>N-(2,6-Diisopropyl­phen­yl)formamide toluene 0.33-solvate</title>
      <link>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/26349</link>
      <description>The crystal packing of the title compound, C13H19NO·0.33C7H8, shows a channel at [001], which contains grossly disordered toluene solvent mol­ecules. The angle between the benzene ring and the mean plane of the formamide group is 71.1 (1)°. The amide groups of neighbouring mol­ecules are connected by N—H(...)O hydrogen bonds, forming 21 helical chains propagating along [001]. Mol­ecules are also connected by weak inter­molecular C—H(...)O hydrogen bonds, forming 61 helices.</description>
      <author>Matthias Berger; Jan W. Bats; Norbert Auner</author>
      <category>article</category>
      <guid>http://publikationen.stub.uni-frankfurt.de/frontdoor/index/index/docId/26349</guid>
      <pubDate>Tue, 19 Feb 2013 09:48:55 +0100</pubDate>
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