TY - JOUR A1 - Winkler, Christoph A1 - Hong, Yunhan A1 - Wittbrodt, Joachim A1 - Schartl, Manfred T1 - Analysis of heterologous and homologous promoters and enhancers in vitro and in vivo by gene transfer into Japanese medaka (Oryzias latipes) and Xiphophorus N2 - Efficient expression systems are required for analysis of gene regulation and function in teleost fish. To develop such systems, a nurober of inducible or constitutive promoter and enhancer sequences of fish or higher vertebrate origin were tested for activity in a variety of fish celllines andin embryos of the Japanese medaka fish (Oryzias latipes) and Xiphophorus. The activity of the different promoterenhancer combinations were quantitated. Considerable differences were found for some constructs if tested in vitro or in vivo. From the data obtained, a set of expression vectors for basic research as weH as for aquaculture purposes were established. KW - Schwertkärpfling KW - Japankärpfling KW - Gentransfer KW - Enhancer KW - Promotor KW - In vitro KW - In vivo Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86796 ER - TY - THES A1 - Teutschbein, Janka T1 - Identifizierung und Charakterisierung von Genen und Proteinen in der Xmrk-induzierten Entwicklung von Melanomen T1 - Identification and characterization of genes and proteins in Xmrk-induced melanomagenesis N2 - 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. N2 - 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. KW - Melanom KW - Schwertkärpfling KW - Microarray KW - Onkogen KW - Epidermaler Wachstumsfaktor-Rezeptor KW - Yeast-Two-Hybrid-System KW - Xiphophorus KW - Rezeptortyrosinkinase KW - Xmrk KW - Protein-Protein-Interaktion KW - Split-Ubiquitin-System KW - Microarray KW - EGFR KW - oncogene KW - melanoma KW - protein-protein interaction Y1 - 2008 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-27516 ER - TY - JOUR A1 - Schartl, Manfred A1 - Wittbrodt, J. A1 - Mäueler, W. A1 - Raulf, F. A1 - Adam, D. A1 - Hannig, G. A1 - Telling, A. A1 - Storch, F. A1 - Andexinger, S. A1 - Robertson, S. M. T1 - Oncogenes and melanoma formation in Xiphoporus (Teleostei: Poeciliidae) N2 - In Xiphophorus melanoma formation has been attributed by classical genetic findings to the overexpression of a cellular oncogene (Tu) due to elimination of the corresponding regulatory gene locus in hybrids. We have attempted to elucidate this phenomenon on the molecular biological level. Studies on the structure and expression of known proto-oncogenes revealed that several of these genes, especially the c-src gene of Xiphophorus, may act as effectors in establishing the neoplastic phenotype of the melanoma cells . However, these genes appear more to participate in secondary steps of tumorigenesis. Another gene, being termed Xmrk, which represents obviously a so far unknown proto-oncogene but with a cons iderably high similarity to the epidermal growth-factorreceptor gene, was mapped to the Tu-containing region of the chromosome. This gene shows features with respect to its structure and expression that seem to justify it to be regarded as a candidate for a gene involved in the primary processes leading to neoplastic transformation of pigment cells in Xiphophorus. KW - Schwertkärpfling KW - Onkogen KW - Melanom Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-87149 ER - TY - CHAP A1 - Schartl, Manfred A1 - Mäueler, Winfried A1 - Raulf, Friedrich A1 - Robertson, Scott M. T1 - Molecular aspects of melanoma formation in Xiphophorus N2 - No abstract available. KW - Schwertkärpfling KW - Krebs Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-72689 ER - TY - JOUR A1 - Schartl, Angelika A1 - Schartl, Manfred T1 - Genes and cancer: Molecular biology of the melanoma oncogene of Xiphophorus N2 - No abstract available. KW - Schwertkärpfling KW - Krebs Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-72670 ER - TY - JOUR A1 - Schartl, A. A1 - Schartl, Manfred A1 - Anders, F. T1 - Promotion and regression of neoplasia by testosterone-promoted cell differentiation in Xiphophorus and Girardinus N2 - No abstract available. KW - Schwertkärpfling KW - Lebendgebärende Zahnkarpfen Y1 - 1982 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86684 ER - TY - CHAP A1 - Schartl, A. A1 - Schartl, Manfred A1 - Anders, F. T1 - Phenotypic conversion of malignant melanoma to benign melanoma and vice versa in Xiphophorus N2 - No abstract available. KW - Schwertkärpfling KW - Krebs Y1 - 1981 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86662 ER - TY - CHAP A1 - Riehl, Rüdiger A1 - Schartl, Manfred A1 - Anders, Fritz T1 - An ultrastructural study of melanoma in Xiphophorus N2 - Melanotic melanoma (MM) of Xiphophorus (Teleostei: Poeciliidae) was studied by conventional preparations and freeze-etch preparations for electron microscopy. MM of Xiphophorus exhibits tightly packed pigment cells with prominent dendritic processes and interdigitations of their plasma membranes. The most impressive feature of MM cells is the occurrence of Iarge lobulated nuclei with numerous nuclear pores and some nuclear pockets. Abundant spheroidal or ellipsoidal melanosomes (diameter 200-650 nm) and vesicular structures are distributed throughout the cellular dendrites, whereas the perinucJear cytoplasm is free of melanosomes. A further characteristic feature of melanoma cells in fish is the occurrence of melanosome complexes (i.e., "compound melanosomes"). These melanosome complexes consist of a few to numerous melanosomes, which are enveloped by a separate rnembrane. Pinocytotic vesicles couJd be demonstrated with distinct differences in frequency and distribution patterns, indicating differences in the metabolic activities of the cells in the same melanoma. Intercellular junctions are lacking in the MM cells. The conventional TEM technique showed clear advantages in the demonstration of intemal architecture of organelles, whereas FE bad considerable potential in respect to the visualization of membrane surface specializations. KW - Schwertkärpfling KW - Krebs KW - Ultrastruktur Y1 - 1985 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-70978 ER - TY - THES A1 - Regneri, Janine T1 - Transcriptional regulation of cancer genes in the Xiphophorus melanoma system T1 - Transkriptionelle Regulation von Krebsgenen im Xiphophorus-Melanommodell N2 - The Xiphophorus melanoma system is a useful animal model for the study of the genetic basis of tumor formation. The development of hereditary melanomas in interspecific hybrids of Xiphophorus is connected to pigment cell specific overexpression of the mutationally activated receptor tyrosine kinase Xmrk. In purebred fish the oncogenic function of xmrk is suppressed by the molecularly still unidentified locus R. The xmrk oncogene was generated by a gene duplication event from the Xiphophorus egfrb gene and thereby has acquired a new 5’ regulatory sequence, which has probably altered the transcriptional control of the oncogene. So far, the xmrk promoter region was still poorly characterized and the molecular mechanism by which R controls xmrk-induced melanoma formation in Xiphophorus still remained to be elucidated. To test the hypothesis that R controls melanoma development in Xiphophorus on the transcriptional level, the first aim of the thesis was to gain a deeper insight into the transcriptional regulation of the xmrk oncogene. To this end, a quantitative analysis of xmrk transcript levels in different Xiphophorus genotypes carrying either the highly tumorigenic xmrkB or the non-tumorigenic xmrkA allele was performed. I was able to demonstrate that expression of the tumorigenic xmrkB allele is strongly increased in malignant melanomas of R-free backcross hybrids compared to benign lesions, macromelanophore spots, and healthy skin. The expression level of the non-tumorigenic xmrkA allele, in contrast, is not influenced by the presence or absence of R. These findings strongly indicate that differential transcriptional regulation of the xmrk promoter triggers the tumorigenic potential of these xmrk alleles. To functionally characterize the xmrk promoter region, I established a luciferase assay using BAC clones containing the genomic regions where xmrk and egfrb are located for generation of reporter constructs. This approach showed for the first time a melanoma cell specific transcriptional activation of xmrkB by its flanking regions, thereby providing the first functional evidence that the xmrk oncogene is controlled by a pigment cell specific promoter region. Subsequent analysis of different deletion constructs of the xmrkB BAC reporter construct strongly indicated that the regulatory elements responsible for the tumor-inducing overexpression of xmrkB in melanoma cells are located within 67 kb upstream of the xmrk oncogene. Taken together, these data indicate that melanoma formation in Xiphophorus is regulated by a tight transcriptional control of the xmrk oncogene and that the R locus acts through this mechanism. As the identification of the R-encoded gene(s) is necessary to fully understand how melanoma formation in Xiphophorus is regulated, I furthermore searched for alternative R candidate genes in this study. To this end, three genes, which are located in the genomic region where R has been mapped, were evaluated for their potential to be a crucial constituent of the regulator locus R. Among these genes, I identified pdcd4a, the ortholog of the human tumor suppressor gene PDCD4, as promising new candidate, because this gene showed the expression pattern expected from the crucial tumor suppressor gene encoded at the R locus. N2 - Fische der Gattung Xiphophorus sind ein gut etabliertes Modellsystem zur Analyse der genetischen Grundlagen der Tumorentwicklung. Die Entwicklung hereditärer Melanome in bestimmten interspezifischen Xiphophorus-Hybriden wird durch die pigmentzellspezifische Überexpression des Onkogens xmrk ausgelöst. Dieses Gen codiert für eine durch Mutationen aktivierte Rezeptortyrosinkinase. In den reinerbigen Elterntieren wird die onkogene Funktion von xmrk durch den Regulator-Locus R unterdrückt, welcher jedoch auf molekularer Ebene noch nicht identifiziert wurde. Das Onkogen xmrk ist durch eine Genduplikation aus dem Protoonkogen egfrb entstanden und hat dabei eine neue regulatorische 5‘ Region erhalten, welche mit hoher Wahrscheinlichkeit die transkriptionelle Regulation des Onkogens verändert hat. Die Promotorregion von xmrk war allerdings bisher nur unzureichend charakterisiert und der molekulare Mechanismus, durch den der R-Locus die xmrk-induzierte Melanomentwicklung kontrolliert, war noch weitgehend unbekannt. Um zu analysieren, ob der R-Locus die Melanomentwicklung in Xiphophorus auf transkriptioneller Ebene kontrolliert, war das erste Ziel dieser Arbeit die transkriptionelle Regulation des xmrk Onkogens genauer zu untersuchen. Zu diesem Zweck habe ich eine quantitative Analyse der xmrk Expressionslevel in Geweben verschiedener Xiphophorus-Genotypen durchgeführt, welche entweder das stark tumorigene xmrkB oder das nicht tumorigene xmrkA Allel besitzen. Ich konnte zeigen, dass im Vergleich zu benignen Läsionen, Macromelanophoren und gesunder Haut, die Expression des tumorigenen xmrkB Allels in den malignen Melanomen der R-defizienten Rückkreuzungshybride stark erhöht ist. Das Expressionslevel des xmrkA Allels wird hingegen nicht durch den R-Locus beeinflusst. Dieses Ergebnis deutet darauf hin, dass eine differenzielle transkriptionelle Regulierung des xmrk Promotors für die Unterschiede im onkogenen Potential dieser Allele verantwortlich ist. Um die xmrk Promotorregion funktional zu charakterisieren, habe ich in der hier vorliegenden Studie einen Luciferase-Assay etabliert, für den BAC-Klone, welche die xmrk- oder egfrb-Region enthalten, zur Herstellung von Reporterkonstrukten verwendet wurden. Mit Hilfe dieses Ansatzes konnte ich zum ersten Mal eine melanomzellspezifische Aktivierung des xmrkB Gens durch seine regulatorischen Regionen zeigen. Dies liefert den ersten funktionalen Beweis, dass das xmrk Onkogen tatsächlich durch einen pigmentzellspezifischen Promotor kontrolliert wird. Durch die nachfolgende Analyse einer Deletionsserie des xmrkB Reporterkonstrukts konnte gezeigt werden, dass die regulatorischen Elemente, welche die starke Überexpression von xmrk in Melanomzellen steuern, in den proximalen 67 kb der xmrk 5‘ Region lokalisiert sind. Zusammengefasst deuten diese Ergebnisse darauf hin, dass die Melanomentwicklung in Xiphophorus durch eine strikte transkriptionelle Kontrolle des xmrk Onkogens reguliert wird und dass der Regulator-Locus R seine tumorsuppressive Funktion über diesen Mechanismus ausübt. Da die Identifizierung des R-Locus-Gens entscheidend ist, um die Melanomentwicklung in Xiphophorus vollständig zu verstehen, habe ich im zweiten Teil dieser Arbeit drei Gene, welche in derselben genomischen Region liegen in der R lokalisiert wurde, genauer untersucht, um zu testen, ob es sich bei einem dieser Gene um eine entscheidende tumorsuppressive Komponente des R-Locus handelt. Von diesen Genen wurde pdcd4a, welches das Ortholog zum humanen Tumorsuppressorgen PDCD4 ist, als vielversprechendes neues Kandidatengen identifiziert, da das Expressionsmuster von pdcd4a mit dem zu erwartenden Expressionsmuster des am R-Locus codierten Tumorsuppressorgens übereinstimmt. KW - Melanom KW - Schwertkärpfling KW - Chromatophor KW - Epidermaler Wachstumsfaktor KW - Onkogen KW - Tumorsuppressorgen KW - Hybrid KW - transkriptionelle Regulation KW - melanoma KW - Xiphophorus KW - xmrk KW - transcriptional control KW - pigment cell KW - Hautkrebs KW - Epidermaler Wachstumsfaktor-Rezeptor Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-82319 ER - TY - JOUR A1 - Raulf, Friedrich A1 - Mäueler, Winfried A1 - Robertson, Scott M. A1 - Schartl, Manfred T1 - Localization of cellular src mRNA during development and in the differentiated bipolar neurons of the adult neural retina in Xiphophorus N2 - The expression of the c-src gene in embryonie and adult tissue of the teleost fish Xiphophorus helleri was analyzed by in-situ hybridization. The highly conserved fish c-src gene was found to be expressed at high levels in midterm embryos, where c-src mRNA was localized in developing neurons of the sensory layer of the differentiating retina and in the developing brain. In adult tissues the expression of c-src was found to persist in certain cell types of the brain and the neural retina, especially in the bipolar cells of the inner nuclear layer, which are postmitotic, fully differentiated mature neurons. Thus c-src in Xiphophorus appears to be a developmentally regulated proto-oncogene which is important for neuronal differentiation during organogenesis, but whose persistence of expression in certain terminally differentiated neurons strongly suggests a particular maintenance function for c-src in these cells as well. KW - Schwertkärpfling KW - Messenger-RNS Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86703 ER -