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N-C Interaktionen des Ca2+-aktivierten Kaliumkanals, hSK3Frei, Eva, January 2007 (has links)
Ulm, Univ., Diss., 2007.
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Gerichtete Proteinevolution als Werkzeug zur Generierung funktionell und strukturell neuartiger ProteineGarbe, Daniel Unknown Date (has links) (PDF)
Marburg, Univ., Diss., 2009
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Charakterisierung des Chaperons Mdg1 unter Berücksichtigung der subzellulären Lokalisation und Identifizierung der Interaktionspartner mit Hilfe des Yeast-two-hybrid-SystemsMüller, Tina S. Unknown Date (has links) (PDF)
Universiẗat, Diss., 2005--Freiburg (Breisgau). / Erscheinungsjahr an der Haupttitelstelle: 2004.
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Identifikation intrazellulärer Interaktionspartner der Rezeptortyrosinkinasen UFO und MET im Two-Hybrid-SystemBenzing, Jörg. January 2001 (has links)
Ulm, Univ., Diss., 2001.
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Systematische Untersuchungen von Proteininteraktionen der MYB und bHLH Transkriptionsfaktoren aus Arabidopsis thalianaZimmermann, Ilona. Unknown Date (has links) (PDF)
Universiẗat, Diss., 2003--Köln.
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Identification and functional analysis of interaction partners of the apoptosis inhibitor DIAP1 in DrosophilaGagic, Mirjana. Unknown Date (has links)
University, Diss., 2005--Düsseldorf.
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Identifikation neuer Interaktionspartner des Bazooka-Proteins in Drosphila melanogasterEgger-Adam, Diane. Unknown Date (has links)
Universiẗat, Diss., 2005--Düsseldorf.
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Yeast Two-Hybrid Analysis of Cellular Proteins Interacting with HTLV-1 p30Millward, Laurie M. 23 August 2010 (has links)
No description available.
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Identifizierung und Charakterisierung von Genen und Proteinen in der Xmrk-induzierten Entwicklung von Melanomen / Identification and characterization of genes and proteins in Xmrk-induced melanomagenesisTeutschbein, Janka January 2008 (has links) (PDF)
Melanome stellen die gefährlichste Form von Hautkrebs mit der höchsten Mortalitätsrate dar. Der Transformation normaler Melanozyten zu malignen Melanomen liegen komplexe molekulare und biochemische Veränderungen zu Grunde. Im Xiphophorus-Melanom-Modell ist die onkogene Rezeptortyrosinkinase "Xiphophorus melanoma receptor kinase" (Xmrk) der alleinige Auslöser der Melanominitiation und -progression. Die Aufklärung der Xmrk-vermittelten Signaltransduktion kann zum besseren Verständnis von Ereignissen, die auch bei der humanen Melanomentwicklung eine Rolle spielen, beitragen. In der vorliegenden Arbeit wurde mit Hilfe der Microarray-Technologie die Regulation der Genexpression durch Xmrk analysiert. Zu den nach Rezeptoraktivierung am stärksten herabregulierten Genen gehörten "son of sevenless homolog 1" (Sos1) und "ubiquitin-conjugating enzyme E2I" (Ube2i); stark hochreguliert waren "early growth response 1" (Egr1), "cysteine-rich protein 61" (Cyr61), "dual-specificity phosphatase 4" (Dusp4), "fos-like antigen 1" (Fosl1), "epithelial membrane protein" (Emp1), Osteopontin (Opn), "insulin-like growth factor binding protein 3" (Igfbp3) und "tumor-associated antigen L6" (Taal6). Die für die Regulation dieser Gene verantwortlichen Signalwege wurden durch die Anwendung von niedermolekularen Inhibitoren und siRNA identifiziert, wobei für die SRC-Kinase FYN eine zentrale Bedeutung bei der Xmrk-abhängigen Regulation der Genexpression festgestellt wurde. Darüber hinaus wurde die Expression der Gene in humanen Melanomzelllinien im Vergleich zu normalen humanen Melanozyten untersucht. Als besonders vielversprechende Kandidaten stellten sich dabei DUSP4 und TAAL6 heraus, deren Rolle in der humanen Melanominduktion und -progression Gegenstand zukünftiger Studien sein wird. In einem anderen Ansatz zur Aufklärung des Signalnetzwerkes sollten Zielproteine von Xmrk durch Protein-Protein-Interaktionsstudien mit Hilfe des Split-Ubiquitin-Systems ermittelt werden. Aufgrund ungünstiger Expressions- oder Faltungseigenschaften von Xmrk in diesem System war es aber nicht möglich, den Rezeptor als Köderprotein einzusetzen. Das für die Xmrk-vermittelte Melanomentstehung zentrale Protein FYN konnte jedoch als Köder etabliert und seine Wechselwirkung mit der Tyrosinkinase FAK analysiert werden. Es wurde gezeigt, dass der phosphorylierte Tyrosinrest an Position 397 von FAK für die Interaktion einer N-terminal trunkierten FAK-Variante mit FYN notwendig ist und dass diese Phosphorylierung in Hefe gewährleistet zu sein scheint. Die Suche nach neuen Interaktionspartnern von FYN mittels der Split-Ubiquitin-Technologie könnte Einblicke in weitere FYN-abhängige Ereignisse bieten, die zur Aufklärung seiner zentralen Rolle bei der Tumorentstehung dienen könnte. / Melanoma is the most aggressive type of skin cancer with the highest mortality rate. The transformation of melanocytes to malignant melanoma is based on complex molecular and biochemical alterations. In the Xiphophorus melanoma model, the oncogenic receptor tyrosine kinase Xiphophorus melanoma receptor kinase (Xmrk) is the sole trigger of melanoma initiation and progression. Elucidating Xmrk-dependent signaling pathways may contribute to a better understanding of processes that play a role in human melanomagenesis, too. Here, the regulation of gene expression by Xmrk was analyzed using a microarray approach. The genes with the strongest down-regulation in response to receptor activation included son of sevenless homolog 1 (Sos1) and ubiquitin-conjugating enzyme E2I (Ube2i), whereas early growth response 1 (Egr1), cysteine-rich protein 61 (Cyr61), dual-specificity phosphatase 4 (Dusp4), fos-like antigen 1 (Fosl1), epithelial membrane protein (Emp1), Osteopontin (Opn), insulin-like growth factor binding protein 3 (Igfbp3), and tumor-associated antigen L6 (Taal6) were strongly up-regulated. The pathways regulating expression of these genes were identified by applying small molecule inhibitors and siRNA. Interestingly, the SRC-family kinase FYN was found to be a key-player in Xmrk-dependent gene regulation. Furthermore, expression of the genes in human melanoma cell lines compared to normal human melanocytes was investigated. The most promising candidates, which might be important for melanoma induction and progression, were DUSP4 and TAAL6. Their potential suitability as diagnostic and prognostic melanoma markers will be addressed in future studies. In addition to gene expression analysis, protein-protein interactions were to be assayed by the split-ubiquitin-system in order to identify novel Xmrk targets. Unfortunately, inappropriate expression or folding of the receptor in this system precluded it from working as bait. However, the FYN protein, which has a central role in Xmrk-mediated signaling, was established as bait and its association with FAK was analyzed in more detail. A phosphorylated tyrosine residue at position 397 of FAK was demonstrated to be necessary for the interaction of an N-terminally truncated FAK variant with FYN, and this phosphorylation event seems to be feasible in yeast. In future, a split-ubiquitin based screen for novel interaction partners of FYN might provide insights into FYN-dependent processes and help to understand its central role in tumor development.
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Estudos estruturais e funcionais de septinas humanas: a ligação e hidrólise de GTP por SEPT3 e a busca de parceiros funcionais de SEPT1, SEPT5 e SEPT7 / Functional and structural studies of human septins: GTP hydrolyse and binding, and screening of functional partners to SEPT1, SEPT5 e SEPT7Macêdo, Joci Neuby Alves 24 September 2010 (has links)
Septinas são proteínas que pertencem a super família das GTPases e que foram inicialmente identificadas em Saccharomyces cerevisae, mas logo em seguida, também em eucariotos superiores, exceto em plantas. Estas proteínas estão envolvidas em uma variedade de processos celulares tais como segregação de cromossomos, polaridade celular, dinâmica da membrana, tráfego de vesículas, exocitose, apoptose, entre outros. Mutações ou alterações no padrão de expressão de septinas são associadas com vários cânceres e doenças neurológicas. Objetivando contribuir com informações funcionais sobre tais proteínas, as septinas humanas 1, 5 e 7 foram usadas como iscas em ensaios de duplo híbrido em leveduras visando à identificação de seus parceiros protéicos. Após a varredura de bibliotecas de cDNA de leucócitos e cérebro fetal humano, os parceiros protéicos predominantemente encontrados foram outras septinas de grupos diferentes aos das iscas. As interações septina-septina envolveram o domínio de ligação a GTP. Ainda, outros parceiros, diferentes de septinas, foram também identificados nas bibliotecas e estes se mostraram funcionalmente relacionados à endocitose, à regulação da atividade de GTPases, ao tráfego intracelular, aos ciclos de sumoilação, à manutenção da placa metafásica e à maturação do centrossomo. Algumas destas funções são inéditas e foram pela primeira vez relacionadas às septinas. Este trabalho também esteve voltado à caracterização biofísica das septinas 3 e 5 (SEPT3 e SEPT5). Muitos protocolos diferentes foram desenvolvidos na tentativa de obter amostras homogêneas de SEPT5, mas não foram bem sucedidos. Por outro lado, SEPT3 recombinante, destituída do domínio amino-terminal (SEPT3GC) foi eficientemente produzida em E. coli. O estado monomérico de SEPT3GC em solução foi confirmado por cromatografia de exclusão molecular e espalhamento de raios-X a baixos ângulos (SAXS). SEPT3GC mostrou-se ativa e capaz de hidrolizar GTP in vitro. A afinidade de SEPT3GC por GTPγS e GDP foi avaliada por calorimetria de titulação isotérmica (ITC), sendo que o KD de SEPT3GC para GTPγS foi de 5,43 μM e a ligação para este nucleotídeo foi dependente de Mg2+. A ligação para GDP não foi detectável. Agregados de SEPT3GC induzidos por temperatura foram capazes de ligar a sonda fluorescente tioflavina-T, sugerindo uma natureza amilóide para tais estruturas. / Septins are proteins that belong to the superfamily of GTPases, which were initially identified in Saccharomyces cerevisiae, and then in higher eukaryotes, except plants. These proteins are involved in a variety of cellular processes such as chromosome segregation, cell polarity, membrane dynamics, vesicle trafficking, exocytosis, apoptosis, among others. Mutations or changes in the expression of septins have been associated with various cancers and neurological diseases. Aiming to provide functional information about these proteins, the human septins 1, 5 and 7 were used as baits in yeast two-hybrid assay in order to identify their protein partners. After screening cDNA libraries from human leukocytes and fetal brain, the protein partners predominantly found were septins from others groups. The septin-septin interactions involved the GTP binding domain. Others non-septins interactors have also been identified in the libraries and were functionally related to endocytosis, the regulation of the GTPase activity, intracellular trafficking, sumoylation, maintenance of metaphase plate and centrosome maturation. Some of these functions are new and were related to the septins for the first time. This work also focused on the biophysical characterization of the septins 3 and 5 (SEPT3 and SEPT5). Many different protocols were developed aiming to obtain homogeneous samples of SEPT5, but were not successful. On the other hand, recombinant SEPT3, without the amino-terminal domain (SEPT3GC), was produced in a homogeneous form in E. coli. SEPT3GC is monomeric in solution as confirmed by size exclusion chromatography and small-angle X-ray scattering (SAXS). Also, SEPT3GC has shown to be active and able to hydrolyze GTP in vitro. The SEPT3GC affinity by GTPγS and GDP were evaluated by isothermal titration calorimetry (ITC). The KD for GTPγS was about 5,43 μM and it was observed to be Mg2+ dependent. The binding to GDP was not detectable. SEPT3GC aggregates induced by temperature were able to bind the thioflavin-T fluorescent probe, suggesting an amyloid nature for such structures.
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