TY - THES A1 - Leikam, Claudia T1 - Oncogene-induced senescence in melanocytes T1 - Onkogen-induzierte Seneszenz in Melanozyten N2 - Melanoma is the most aggressive skin cancer with very limited treatment options. Upon appearance of metastases chemotherapeutics are used to either kill or slow down the growth of cancer cells by inducing apoptosis or senescence, respectively. With melanomas originating from melanocytes, it is vital to elucidate the mechanisms that distinguish senescence induction from proliferation and tumourigenicity. Xmrk (Xiphophorus melanoma receptor kinase), the fish orthologue of the human epidermal growth factor receptor (EGFR), causes highly aggressive melanoma in fish. Using an inducible variant, HERmrk, I showed that high receptor levels result in melanocyte senescence, whereas low and medium expression allows for cell proliferation and tumourigenicity. Mechanistically, HERmrk leads to increased reactive oxygen species (ROS) levels, which trigger a DNA damage response. Consequently, multinucleated, senescent cells develop by both endomitosis and fusion. Furthermore, oncogenic N‐RAS (N-‐RAS61K) induces a similar multinucleated phenotype in melanocytes. In addition, I found that both overexpression of C‐MYC and the knockdown of miz­‐1 (Myc­‐interacting zinc finger protein 1) diminished HERmrk‐induced senescence entry. C‐MYC prevent ROS induction, DNA damage and senescence, while acting synergistically with HERmrk in conveying tumourigenic features to melanocytes. Further analyses identified cystathionase (CTH) as a novel target gene of Myc and Miz-­1 crucial for senescence prevention. CTH encodes an enzyme involved in the synthesis of cysteine from methionine, thereby allowing for increased ROS detoxification. Even though senescence was thought to be irreversible and hence tumour protective, I demonstrated that prolonged expression of the melanoma oncogene N­‐RAS61K in pigment cells overcomes initial OIS by triggering the emergence of tumour‐initiating, mononucleated stem‐like cells from multinucleated senescent cells. This progeny is dedifferentiated, highly proliferative, anoikis­‐resistant and induces fast­‐growing, metastatic tumours upon transplantation into nude mice. Our data demonstrate that induction of OIS is not only a cellular failsafe mechanism, but also carries the potential to provide a source for highly aggressive, tumour­‐initiating cells. N2 - Das Melanom ist der aggressivste Hautkrebstyp mit aeußerst begrenzten Therapiemoeglichkeiten. Sobald Metastasen diagnostiziert werden, kommen Chemotherapeutika zum Einsatz, deren Aufgabe darin besteht, die Krebszellen durch Apotoseinduktion zu toeten oder ihre Verbreitung mittels Seneszenz zu verlangsamen. Da Melanome aus Melanozyten hervorgehen, ist es essentiell, die Mechanismen zu analysieren, die entscheiden, ob Zellen seneszent oder tumorigen werden. Xmrk, die Xiphophorus­‐Melanom‐Rezeptor­‐Kinase und Fischortholog des humanen epidermalen Wachstumsfaktors (EGFR), verursacht aggressive Melanome in Fischen. Durch den Einsatz von HERmrk, einer induzierbaren Variante des Rezeptors, konnte ich zeigen, dass hohe Expressionslevel Seneszenz in Melanozyten zur Folge haben, wohingegen niedrige oder mittlere Rezeptorlevel mit erhöhter Zellproliferation und Tumorigenitaet der Zellen einhergehen. Mechanistisch gesehen, führt die Aktivierung von HERmrk zu gesteigerten Level an reaktiven Sauerstoffspezies (ROS), die wiederum DNA‐Schäden verursachen und dadurch bestimmte Signalwege auslösen. Durch Endomitose und Fusion entstehen letztendlich multinukleaere, seneszente Zellen. Interessanterweise, führte die Expression von onkogenem N‐RAS (N‐RAS61K) in Melanozyten zu einem sehr ähnlichen Phaenotyp. Des Weiteren konnte ich zeigen, dass sowohl die Überexpression von C-­MYC als auch der Knockdown von miz‐1 (Myc­‐interagierendes Zinkfingerprotein 1) der HERmrk-­induzierten Seneszenz entgegenwirkten. C‐MYC verhindert einerseits die Entstehung von ROS, die dadurch verursachten DNA‐Schaeden und damit die Seneszenz und wirkt andererseits synergistisch mit HERmrk, indem es den Melanozyten tumorigene Eigenschaften verleiht. In weiteren Analysen wurde Cystathionase (CTH) als neues Zielgen von Myc und Miz-­1 identifiziert, dem eine zentrale Rolle in der Seneszenzverhinderung zukommt. CTH kodiert fuer ein Enzym, das die Synthese von Cystein aus Methionin und damit die Entsorgung von ROS ermöglicht. Obwohl man davon ausgeht, dass Seneszenz einen irreversiblen Mechanismus darstellt, der die Tumorentstehung verhindert, konnte ich zeigen, dass die langfristige Expression des Melanomonkogens N‐RAS61K die initiale Seneszenzinduktion durchbricht. Dabei gehen mononukleaere, tumorigene, stammzellaehnliche Zellen aus seneszenten Zellen hervor. Diese Tochterzellen sind dedifferenziert, hochproliferativ, Anoikis­‐resistent und induzieren schnellwachsende, metastasierende Tumoren in Nacktmaeusen. Damit machen meine Daten deutlich, dass Seneszenz nicht nur als zellulaerer Schadensbegrenzungsmechanismus fungiert, sondern auch das Potential hat, aeußerst aggressive Tumorzellen zu generieren. KW - Melanom KW - Altern KW - Onkogen KW - Melanophor KW - Hautkrebs KW - Seneszenz KW - Xmrk KW - N-RAS KW - melanoma KW - senescence KW - OIS KW - skin cancer KW - oncogenes Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-79316 ER - TY - JOUR A1 - Schubert, Maria A1 - Spahn, Martin A1 - Kneitz, Susanne A1 - Scholz, Claus Jürgen A1 - Joniau, Steven A1 - Stroebel, Philipp A1 - Riedmiller, Hubertus A1 - Kneitz, Burkhard T1 - Distinct microRNA Expression Profile in Prostate Cancer Patients with Early Clinical Failure and the Impact of let-7 as Prognostic Marker in High-Risk Prostate Cancer JF - PLoS ONE N2 - Background The identification of additional prognostic markers to improve risk stratification and to avoid overtreatment is one of the most urgent clinical needs in prostate cancer (PCa). MicroRNAs, being important regulators of gene expression, are promising biomarkers in various cancer entities, though the impact as prognostic predictors in PCa is poorly understood. The aim of this study was to identify specific miRNAs as potential prognostic markers in high-risk PCa and to validate their clinical impact. Methodology and Principal Findings We performed miRNA-microarray analysis in a high-risk PCa study group selected by their clinical outcome (clinical progression free survival (CPFS) vs. clinical failure (CF)). We identified seven candidate miRNAs (let-7a/b/c, miR-515-3p/5p, -181b, -146b, and -361) that showed differential expression between both groups. Further qRT-PCR analysis revealed down-regulation of members of the let-7 family in the majority of a large, well-characterized high-risk PCa cohort (n = 98). Expression of let-7a/b/and -c was correlated to clinical outcome parameters of this group. While let-7a showed no association or correlation with clinical relevant data, let-7b and let-7c were associated with CF in PCa patients and functioned partially as independent prognostic marker. Validation of the data using an independent high-risk study cohort revealed that let-7b, but not let-7c, has impact as an independent prognostic marker for BCR and CF. Furthermore, we identified HMGA1, a non-histone protein, as a new target of let-7b and found correlation of let-7b down-regulation with HMGA1 over-expression in primary PCa samples. Conclusion Our findings define a distinct miRNA expression profile in PCa cases with early CF and identified let-7b as prognostic biomarker in high-risk PCa. This study highlights the importance of let-7b as tumor suppressor miRNA in high-risk PCa and presents a basis to improve individual therapy for high-risk PCa patients. KW - biomarkers KW - gene expression KW - gene targeting KW - luciferase KW - MircoRNA KW - microarrays KW - oncogenes KW - prostate cancer Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96825 ER - TY - JOUR A1 - Deeken, Rosalia A1 - Gohlke, Jochen A1 - Scholz, Claus-Juergen A1 - Kneitz, Susanne A1 - Weber, Dana A1 - Fuchs, Joerg A1 - Hedrich, Rainer T1 - DNA Methylation Mediated Control of Gene Expression Is Critical for Development of Crown Gall Tumors JF - PLoS Genetics N2 - Crown gall tumors develop after integration of the T-DNA of virulent Agrobacterium tumefaciens strains into the plant genome. Expression of the T-DNA–encoded oncogenes triggers proliferation and differentiation of transformed plant cells. Crown gall development is known to be accompanied by global changes in transcription, metabolite levels, and physiological processes. High levels of abscisic acid (ABA) in crown galls regulate expression of drought stress responsive genes and mediate drought stress acclimation, which is essential for wild-type-like tumor growth. An impact of epigenetic processes such as DNA methylation on crown gall development has been suggested; however, it has not yet been investigated comprehensively. In this study, the methylation pattern of Arabidopsis thaliana crown galls was analyzed on a genome-wide scale as well as at the single gene level. Bisulfite sequencing analysis revealed that the oncogenes Ipt, IaaH, and IaaM were unmethylated in crown galls. Nevertheless, the oncogenes were susceptible to siRNA–mediated methylation, which inhibited their expression and subsequently crown gall growth. Genome arrays, hybridized with methylated DNA obtained by immunoprecipitation, revealed a globally hypermethylated crown gall genome, while promoters were rather hypomethylated. Mutants with reduced non-CG methylation developed larger tumors than the wild-type controls, indicating that hypermethylation inhibits plant tumor growth. The differential methylation pattern of crown galls and the stem tissue from which they originate correlated with transcriptional changes. Genes known to be transcriptionally inhibited by ABA and methylated in crown galls became promoter methylated upon treatment of A. thaliana with ABA. This suggests that the high ABA levels in crown galls may mediate DNA methylation and regulate expression of genes involved in drought stress protection. In summary, our studies provide evidence that epigenetic processes regulate gene expression, physiological processes, and the development of crown gall tumors. KW - DNA methylation KW - DNA transcription KW - gene expression KW - oncogenes KW - plant genomics KW - sequence motif analysis KW - arabidopsis thaliana KW - agrobacterium tumefaciens Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96318 ER - TY - JOUR A1 - Zhang, Yi A1 - Lee, Chil-Woo A1 - Wehner, Nora A1 - Imdahl, Fabian A1 - Svetlana, Veselova A1 - Weiste, Christoph A1 - Dröge-Laser, Wolfgang A1 - Deeken, Rosalia T1 - Regulation of Oncogene Expression in T-DNA-Transformed Host Plant Cells JF - PLoS Pathogens N2 - Virulent Agrobacterium tumefaciens strains integrate their T-DNA into the plant genome where the encoded agrobacterial oncogenes are expressed and cause crown gall disease. Essential for crown gall development are IaaH (indole-3-acetamide hydrolase), IaaM (tryptophan monooxygenase) and Ipt (isopentenyl transferase), which encode enzymes for the biosynthesis of auxin (IaaH, IaaM) and cytokinin (Ipt). Although these oncogenes are well studied as the tumor-inducing principle, nothing is known about the regulation of oncogene expression in plant cells. Our studies show that the intergenic regions (IGRs) between the coding sequences (CDS) of the three oncogenes function as promoters in plant cells. These promoters possess a eukaryotic sequence organization and cis-regulatory elements for the binding of plant transcription factors. WRKY18, WRKY40, WRKY60 and ARF5 were identified as activators of the Ipt promoter whereas IaaH and IaaM is constitutively expressed and no transcription factor further activates their promoters. Consistent with these results, the wrky triple mutant plants in particular, develops smaller crown galls than wild-type and exhibits a reduced Ipt transcription, despite the presence of an intact ARF5 gene. WRKY40 and WRKY60 gene expression is induced by A. tumefaciens within a few hours whereas the ARF5 gene is transcribed later during crown gall development. The WRKY proteins interact with ARF5 in the plant nucleus, but only WRKY40 together with ARF5 synergistically boosts the activation of the Ipt promoter in an auxin-dependent manner. From our data, we propose that A. tumefaciens initially induces WRKY40 gene expression as a pathogen defense response of the host cell. The WRKY protein is recruited to induce Ipt expression, which initiates cytokinin-dependent host cell division. With increasing auxin levels triggered by ubiquitous expression of IaaH and IaaM, ARF5 is activated and interacts with WRKY40 to potentiate Ipt expression and balance cytokinin and auxin levels for further cell proliferation. KW - luminescence KW - oncogenes KW - agrobacterium tumefaciens KW - transcription factors KW - auxins KW - gene expression KW - cytokinins KW - plant cells Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125256 VL - 11 IS - 1 ER -