TY - CHAP A1 - Anders, F. A1 - Schartl, Manfred A1 - Scholl, E. T1 - Evaluation of environmental and hereditary factors in carcinogenesis, based on studies in Xiphophorus N2 - Neoplasia in Xiphophorus can be classified into a) a large group that is triggered by carcinogens; b) a large group triggered by promoters; c) a small group that develops "spontaneously" following interpopulational and interracial hybridizations; and d) a small group that develops "spontaneously" following germ line mutation. The process leading to susceptibility for neoplasia is represented by the disintegration of gene systems that normally protect the fish from neoplasia. Hybridization is the most effective process that leads to disintegration of the protection gene systems. Environmental factors may complete disintegration and thus may trigger neoplasia. It is discussed whether the findings on Xiphophorus may also apply to humans. KW - Schwertkärpfling KW - Gen KW - Umweltfaktor KW - Carcinogenese Y1 - 1981 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-72741 ER - TY - CHAP A1 - Anders, F. A1 - Scholl, E. A1 - Schartl, Manfred T1 - Environmental and hereditary factors in the causation of neoplasia, based on studies of the Xiphophorus fish melanoma system N2 - Neoplasia in Xiphophorus can be classified into: a) a Jarge group triggered by carcinogens; b) a large group triggered by promoters; and c) a small group that develops "spontaneously" according to Mendelian Jaw. The process leading to susceptibility for neoplasia is represented by the disintegration of gene systems that normally protect the fish from neoplasia. Interpopulational arid interracial hybridization is the most effective process that Ieads to disintegration of the protective gene systems. Environmental factors may complete disintegration in somatic cells and thus may trigger neoplasia. The applications of the findings on Xiphophorus to humans are discussed. KW - Schwertkärpfling KW - Gen KW - Umweltfaktor KW - Tumor Y1 - 1981 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86402 ER - TY - THES A1 - Cardoso e Castro, Inês Sofia T1 - Epigenetic switch induced by MYC in Non-Small-Cell Lung Cancer T1 - Durch MYC induzierte epigenetische Veränderung im Nichtkleinzelligen Bronchialkarzinom N2 - Non–Small-Cell Lung Cancer (NSCLC) is the most frequent human lung cancer and a major cause of death due to its high rate of metastasis1. These facts emphasize the urgent need for the investigation of new targets for anti-metastatic therapy. Up to now a number of genes and gene products have been identified that positively or negatively affect the probability of established human tumor cell lines to metastasize2. Previously, together with the group of Professor Ulf Rapp, we have described the first conditional mouse model for metastasis of NSCLC and identified a gene, c-MYC, that is able to orchestrate all steps of this process. We could identify potential markers for detection of metastasis and highlighted GATA4, which is exclusively expressed during lung development, as a target for future therapeutic intervention2. However, the mechanism underlying this metastatic conversion remained to be identified, and was therefore the focus of the present work. Here, GATA4 is identified as a MYC target in the development of metastasis and epigenetic alterations at the GATA4 promoter level are shown after MYC expression in NSCLC in vivo and in vitro. Such alterations include site-specific demethylation that accompanies the displacement of the MYC-associated zinc finger protein (MAZ) from the GATA4 promoter, which leads to GATA4 expression. Histone modification analysis of the GATA4 promoter revealed a switch from repressive histone marks to active histone marks after MYC binding, which corresponds to active GATA4 expression. This work identifies a novel epigenetic mechanism by which MYC activates GATA4 leading to metastasis in NSCLC, suggesting novel potential targets for the development of anti-metastatic therapy. N2 - Das nichtkleinzellige Bronchialkarzinom (Non-Small-Cell Lung Cancer/NSCLC) ist die häufigste Form des Lungenkrebs und ist aufgrund seiner hohen Metastasierungsrate für die meisten krebsbedingten Todesfälle verantwortlich1. Bisher konnte eine Vielzahl von Genen und Genprodukten identifiziert werden, die einen Einfluss auf das Metastasierungspotenzial von humanen Tumorzelllinien in vitro haben2. Vor kurzem gelang es uns unter der Leitung von Prof. Ulf R. Rapp das erste konditionelle Modell der Metastasierung von NSCLC zu beschreiben. Wir identifizierten u.a. das Gen c-MYC, welches in der Lage ist, in alle Schritte des Prozesses manipulierend einzugreifen. Im Rahmen dieser Arbeit konnten wir potentielle Marker zur Detektion der Metastasierung identifizieren. Unser Hauptaugenmerk lag dabei auf GATA4, ein Gen, das nur während der Lungenentwicklung exprimiert wird. Als potentielles Ziel für spätere therapeutische Eingriffe erscheint es daher besonders geeignet2. Die der Metastasierung zugrunde liegenden Mechanismen sind bisher weitestgehend ungeklärt und stellen daher einen Fokus dieser Arbeit dar. Im Rahmen der vorliegenden Arbeit wurde GATA4 als ein von MYC regulierter Faktor identifiziert, der an der Entwicklung von Metastasen beteiligt ist. Epigenetische Veränderungen am GATA4-Promotor nach der Expression von MYC konnten sowohl in vitro als auch in vivo nachgewiesen werden. Die Veränderungen beinhalten ortsspezifische Methylierungen, die einhergehen mit der Dislokation des MYC-assoziierten zinc finger protein (MAZ), die zur Expression von GATA4 führt. Die Analyse der Histon-Modifikationen am GATA4-Promotor ergab, dass nach der Bindung von MYC ein Wechsel von reprimierenden Histon-Markierungen zu aktiven stattfindet, der mit der GATA4-Expression korreliert. Im Rahmen dieser Arbeit konnte also ein neuartiger epigenetischer Mechanismus identifiziert werden, mit dem MYC GATA4 aktiviert und auf diese Weise zur Metastasenbildung bei NSCLC führt. Gleichzeitig wurden dadurch neue potentielle Zielstrukturen für die Entwicklung von anti-metastasierenden Therapeutika gefunden. KW - Nicht-kleinzelliges Bronchialkarzinom KW - Metastase KW - Gen KW - Myc KW - Epigenese KW - Non-Small Cell Lung Cancer KW - Epigenetic KW - MYC KW - GATA4 Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-76713 ER - TY - JOUR A1 - Hannig, Gerhard A1 - Ottilie, Sabine A1 - Schartl, Manfred T1 - Conservation of structure and expression of the c-yes and fyn genes in lower vertebrates N2 - The src-gene family in mammals and birds consists of 9 closely related protein tyrosine kinases. We have cloned the c-yes and fyn bomologues of the src-family from the teleost fish Xiphophorus helleri. Both genes show a high degree of sequence conservation and exhibit all structural motifs diagnostic for functional src-like protein tyrosine kinases. Sequence comparisons revealed three domains (exon 2, exons 3--6, exons 7-12) which evolve at different rates. Both genes exhibit an identical expression pattern, with preferential expression in neural tissues. No transcripts of c-yes were found in liver wbich is contrary to the situation in higher vertebrales. In malignant melanoma, elevated Ieveis of c-yes andfyn were detected indicating a possible function during secondary steps of tumor progression for src-related tyrosine kinases. KW - Konservierung KW - Gen KW - Niedere Wirbeltiere Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86723 ER -