TY - JOUR A1 - Ebert, Regina A1 - Benisch, Peggy A1 - Krug, Melanie A1 - Zeck, Sabine A1 - Meißner-Weigl, Jutta A1 - Steinert, Andre A1 - Rauner, Martina A1 - Hofbauer, Lorenz A1 - Jakob, Franz T1 - Acute phase serum amyloid A induces proinflammatory cytokines and mineralization via toll-like receptor 4 in mesenchymal stem cells JF - Stem Cell Research N2 - The role of serum amyloid A (SAA) proteins, which are ligands for toll-like receptors, was analyzed in human bone marrow-derived mesenchymal stem cells (hMSCs) and their osteogenic offspring with a focus on senescence, differentiation andmineralization. In vitro aged hMSC developed a senescence-associated secretory phenotype (SASP), resulting in enhanced SAA1/2, TLR2/4 and proinflammatory cytokine (IL6, IL8, IL1\(\beta\), CXCL1, CXCL2) expression before entering replicative senescence. Recombinant human SAA1 (rhSAA1) induced SASP-related genes and proteins in MSC, which could be abolished by cotreatment with the TLR4-inhibitor CLI-095. The same pattern of SASP-resembling genes was stimulated upon induction of osteogenic differentiation, which is accompanied by autocrine SAA1/2 expression. In this context additional rhSAA1 enhanced the SASP-like phenotype, accelerated the proinflammatory phase of osteogenic differentiation and enhanced mineralization. Autocrine/paracrine and rhSAA1 via TLR4 stimulate a proinflammatory phenotype that is both part of the early phase of osteogenic differentiation and the development of senescence. This signaling cascade is tightly involved in bone formation and mineralization, but may also propagate pathological extraosseous calcification conditions such as calcifying inflammation and atherosclerosis. KW - human atherosclerotic lesions KW - senescence KW - expression KW - toll-like receptor KW - mineralization KW - osteogenic differentiation KW - serum amyloid A KW - inflammation KW - mesenchymal stem cells KW - WNT5A KW - model KW - lines KW - stromal cells KW - RT-PCR Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148491 VL - 15 ER - TY - JOUR A1 - Grimm, Johannes A1 - Hufnagel, Anita A1 - Wobser, Marion A1 - Borst, Andreas A1 - Haferkamp, Sebastian A1 - Houben, Roland A1 - Meierjohann, Svenja T1 - BRAF inhibition causes resilience of melanoma cell lines by inducing the secretion of FGF1 JF - Oncogenesis N2 - Approximately half of all melanoma patients harbour activating mutations in the serine/threonine kinase BRAF. This is the basis for one of the main treatment strategies for this tumor type, the targeted therapy with BRAF and MEK inhibitors. While the initial responsiveness to these drugs is high, resistance develops after several months, frequently at sites of the previously responding tumor. This indicates that tumor response is incomplete and that a certain tumor fraction survives even in drug-sensitive patients, e.g., in a therapy-induced senescence-like state. Here, we show in several melanoma cell lines that BRAF inhibition induces a secretome with stimulating effect on fibroblasts and naive melanoma cells. Several senescence-associated factors were found to be transcribed and secreted in response to BRAF or MEK inhibition, among them members of the fibroblast growth factor family. We identified the growth factor FGF1 as mediator of resilience towards BRAF inhibition, which limits the pro-apoptotic effects of the drug and activates fibroblasts to secrete HGF. FGF1 regulation was mediated by the PI3K pathway and by FRA1, a direct target gene of the MAPK pathway. When FGFR inhibitors were applied in parallel to BRAF inhibitors, resilience was broken, thus providing a rationale for combined therapeutical application. KW - melanoma KW - senescence KW - BRAF KW - tumor Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177261 VL - 7 IS - 71 ER - TY - JOUR A1 - Stojanović, Stevan D. A1 - Fuchs, Maximilian A1 - Fiedler, Jan A1 - Xiao, Ke A1 - Meinecke, Anna A1 - Just, Annette A1 - Pich, Andreas A1 - Thum, Thomas A1 - Kunz, Meik T1 - Comprehensive bioinformatics identifies key microRNA players in ATG7-deficient lung fibroblasts JF - International Journal of Molecular Sciences N2 - Background: Deficient autophagy has been recently implicated as a driver of pulmonary fibrosis, yet bioinformatics approaches to study this cellular process are lacking. Autophagy-related 5 and 7 (ATG5/ATG7) are critical elements of macro-autophagy. However, an alternative ATG5/ATG7-independent macro-autophagy pathway was recently discovered, its regulation being unknown. Using a bioinformatics proteome profiling analysis of ATG7-deficient human fibroblasts, we aimed to identify key microRNA (miR) regulators in autophagy. Method: We have generated ATG7-knockout MRC-5 fibroblasts and performed mass spectrometry to generate a large-scale proteomics dataset. We further quantified the interactions between various proteins combining bioinformatics molecular network reconstruction and functional enrichment analysis. The predicted key regulatory miRs were validated via quantitative polymerase chain reaction. Results: The functional enrichment analysis of the 26 deregulated proteins showed decreased cellular trafficking, increased mitophagy and senescence as the major overarching processes in ATG7-deficient lung fibroblasts. The 26 proteins reconstitute a protein interactome of 46 nodes and miR-regulated interactome of 834 nodes. The miR network shows three functional cluster modules around miR-16-5p, miR-17-5p and let-7a-5p related to multiple deregulated proteins. Confirming these results in a biological setting, serially passaged wild-type and autophagy-deficient fibroblasts displayed senescence-dependent expression profiles of miR-16-5p and miR-17-5p. Conclusions: We have developed a bioinformatics proteome profiling approach that successfully identifies biologically relevant miR regulators from a proteomics dataset of the ATG-7-deficient milieu in lung fibroblasts, and thus may be used to elucidate key molecular players in complex fibrotic pathological processes. The approach is not limited to a specific cell-type and disease, thus highlighting its high relevance in proteome and non-coding RNA research. KW - bioinformatics KW - miR KW - proteomics KW - functional network analysis KW - senescence KW - lung fibrosis KW - autophagy Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-285181 SN - 1422-0067 VL - 21 IS - 11 ER - TY - THES A1 - Müller, Judith T1 - Die Rolle der HectH9/Mcl1-Interaktion in der Myc-induzierten Apoptose und Auswirkungen der Myc V394D-Mutation auf die von c-Myc gesteuerten Tumorgenese in einem transgenen Mausmodell T1 - Role of the HectH9/Mcl1 interaction in Myc-induced apoptosis and Impact of the Myc V394D mutation in c-Myc-driven murine lymphomagenesis N2 - Während der Entstehung von Tumoren können zwei Mechanismen auftreten, die beide von der Aktivität der Onkogene abhängig sind und die Tumorgenese einschränken. Für das Onkogen Myc ist gezeigt, dass es sowohl Apoptose als auch unter bestimmten Umständen Seneszenz auslösen kann und damit sein eigenes onkogenes Potential limitiert. Im Rahmen dieser Arbeit konnte ich mich mit diesen Tumor-suppressiven Mechanismen in zwei unabhängigen Teilprojekten beschäftigen. Eine erhöhte Expression von Myc steigert die Proliferation der Zellen, induziert aber gleichzeitig Doppelstrangbrüche an der DNA. Durch den dadurch entstandenen Schaden wird die DNA-Schadensantwort ausgelöst, die zum Beispiel zur Phosphorylierung von H2A.X durch die Kinasen Atm und Atr führt. Ein weiteres putatives Zielprotein dieser Kinasen ist HectH9, das abhängig vom DNA-Schaden das mitochondriale Protein Mcl1 ubiquitiniert und es damit für den proteasomalen Abbau markiert. Im ungestressten Zustand interagiert das in der mitochondrialen Membran lokalisierte Protein Mcl1 mit proapoptotischen Proteinen und hält deren inerten Status aufrecht. Die Reduktion der Mcl1-Mengen ist essentiell, um die proapoptotischen Proteine zu aktivieren, dadurch die Freisetzung von Zytochrom C aus dem Mitochondrium zu veranlassen und damit den Prozess der Apoptose einleiten zu können. Anhand der in dieser Arbeit dokumentierten Daten bietet sich Mcl1 als potentielles Zielprotein für pharmazeutisch Strategien zur Therapie Myc-induzierter Tumore an. Im Idealfall erhöht eine verstärkte Reduktion seiner Proteinmengen die zelluläre Apoptose und verringert somit das Tumorwachstum. Im murinen T-Zell-Lymphom wird die Myc-abhängige Tumorgenese durch eine Mutation der Proteinsequenz von Myc verlangsamt. Diese Mutation unterbindet die Bindung von Myc zu Miz1 und verhindert dadurch die Repression von Zielgenen. Abhängig von der Interaktion von Myc zu Miz1 gelingt die Inhibition der Transkription des Zellzyklusinhibitors p15Ink4b. Die Interaktion von Myc und Miz1 ist essentiell um die TGFbeta-abhängige Seneszenz zu umgehen. Darüber hinaus ist Myc direkt an der Repression von TGFbeta beteiligt. Entgegen der bisher verwendeten Modelle konnte in dieser Arbeit gezeigt werden, dass Myc unabhängig von Miz1 zu den Promotoren der reprimierten Zielgene rekrutiert wird und die Bindung der beiden Proteine offensichtlich nur für die Transrepression essentiell ist. N2 - Apoptosis and senescence are two distinct mechanisms that are induced by oncogenes to limit their oncogenic potential during tumorigenesis. Their appearance seems to be dependent on the specific oncogene. For a long time it is known that the oncogene Myc is a strong inducer of apoptosis. Latest results revealed, that Myc is also able to induce senescence, to prevent transformed cells from proliferating. Within the framework of my PhD I concentrated on both tumor suppressive mechanisms in two independent particular projects. Increased expression and activity of Myc enhances cell proliferation and thereby induces DNA double strand breaks. This damage activates a DNA damage response which leads to Atm/Atr mediated phosphorylation of H2A.X. A further target of the kinases Atm and Atr is HectH9 which ubiquitinates the mitochondrial protein Mcl1 in a DNA damage dependent manner. The ubiquitination of Mcl1 labels this protein for proteasomal degradation. In unstressed cells Mcl1 is located in the mitochondrial membrane where it interacts with proapoptotic members of the Bcl2 family inhibiting their activity. The reduction of Mcl1 protein is essential for the activation of proapoptotic proteins at the mitochondrium allowing release of cytochrome c as initial step in apoptosis. Myc mediated tumorigenesis is limited by using a mutant form of Myc as driving oncogene. This mutation inhibits interaction of Myc to its binding partner Miz1. The interaction of Myc and Miz1 is required to repress target genes like p21Cip1 and p15Ink4b. In vivo experiments demonstrate that Myc and Miz1 need to bind to each other to bypass TGFbeta-dependent senescence. This process is dependent on elevated levels of Myc consequently reduction to physiological levels of the protein induces apoptosis and senescence in a TGFbetadependent mannerIn addition, there is evidence that Myc is directly involved in the repression of Tgfbeta. In contrast to established models of repression by the Myc/Miz1 complex, it was shown, that Myc is recruited to and binds target DNA independently of Miz1. Therefore, I suggest that interaction of both proteins is essential only at the step of transcriptional initiation. KW - Myc KW - Apoptosis KW - DNS-Schädigung KW - Transforming Growth Factor beta KW - T-Zell-Lymphom KW - Seneszenz KW - Ubiquitinierung KW - Miz1 KW - p15Ink4b KW - senescence KW - ubiquitination KW - Miz1 KW - p15Ink4b Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-55789 ER - TY - JOUR A1 - Trivanovic, Drenka A1 - Volkmann, Noah A1 - Stoeckl, Magdalena A1 - Tertel, Tobias A1 - Rudert, Maximilian A1 - Giebel, Bernd A1 - Herrmann, Marietta T1 - Enhancement of immunosuppressive activity of mesenchymal stromal cells by platelet-derived factors is accompanied by apoptotic priming JF - Stem Cell Reviews and Reports N2 - The pro-inflammatory phase of bone healing, initiated by platelet activation and eventually hematoma formation, impacts bone marrow mesenchymal stromal cells (MSCs) in unknown ways. Here, we created platelet-rich plasma (PRP) hydrogels to study how platelet-derived factors modulate functional properties of encapsulated MSCs in comparison to a non-inflammatory fibrin (FBR) hydrogel environment. MSCs were isolated from human bone marrow, while PRP was collected from pooled apheresis thrombocyte concentrates and used for hydrogel preparation. After their encapsulation in hydrogels for 72 h, retrieved MSCs were analyzed for immunomodulatory activities, apoptosis, stem cell properties, senescence, CD9\(^+\), CD63\(^+\) and CD81\(^+\) extracellular vesicle (EV) release, and metabolism-related changes. PRP-hydrogels stimulated immunosuppressive functions of MSCs, along with their upregulated susceptibility to cell death in communication with PBMCs and augmented caspase 3/7 activity. We found impaired clonal growth and cell cycle progression, and more pronounced β-galactosidase activity as well as accumulation of LC3-II-positive vacuoles in PRP-MSCs. Stimuli derived from PRP-hydrogels upregulated AKT and reduced mTOR phosphorylation in MSCs, which suggests an initiation of survival-related processes. Our results showed that PRP-hydrogels might represent a metabolically stressful environment, inducing acidification of MSCs, reducing polarization of the mitochondrial membrane and increasing lipid accumulation. These features were not detected in FBR-MSCs, which showed reduced CD63\(^+\) and CD81\(^+\) EV production and maintained clonogenicity. Our data revealed that PRP-derived hematoma components cause metabolic adaptation of MSCs followed by increased immune regulatory functions. For the first time, we showed that PRP stimuli represent a survival challenge and “apoptotic priming” that are detrimental for stem cell-like growth of MSCs and important for their therapeutic consideration. KW - hematoma KW - platelet-rich plasma KW - fibrin KW - mesenchymal stromal cells KW - immunomodulation KW - apoptosis KW - autophagy KW - senescence KW - extracellular vesicles KW - metabolism Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-324669 VL - 19 IS - 3 ER - TY - THES A1 - Brousos, Nikos Alexander T1 - Mesenchymale Stammzellen: Analyse der Auswirkungen des Einsatzes von humanem Serum in der Langzeitkultur sowie des Entwicklungspotentials im Blastozystenmodell T1 - Mesenchymal stem cells: The effect of human serum in long term culture and the developmental potential in the blastocyst model N2 - Mesenchymale Stammzellen (MSCs) sind multipotente adulte Stammzellen. Sie können aus einer Vielzahl verschiedener Gewebe isoliert werden, z.B. aus Knochenmark (BM), Fettgewebe (AT) und Nabelschnurblut (CB). Besondere Bedeutung haben MSCs als mögliche Zellquelle für neuartige klinische Stammzelltherapien, da sie relativ einfach aus adulten Patienten isoliert und in vitro expandiert werden können. Grundlage für die erforschten Therapieansätze ist häufig das Entwicklungspotential der MSCs. Es umfasst mesenchymale Zelltypen wie Adipozyten, Chondrozyten und Osteoblasten, aber auch nicht-mesenchymale Zelltypen wie z.B. Hepatozyten oder Nervenzellen. Das Entwick-lungspotential von MSCs zu nicht-mesenchymalen Zelltypen ist jedoch umstritten und viele Differenzierungswege sind bisher nur in vitro gezeigt. Außerdem ist unklar, ob MSCs aus verschiedenen Ursprungsgeweben dasselbe Entwicklungspotential besitzen. Ein Ziel dieser Arbeit war deshalb das in vivo Differenzierungspotential von CB-, AT- und BM-MSCs vergleichend zu untersuchen. Dazu wurden die MSCs in murine Tag-3-Blastozysten injiziert. Diese wurden dann in Foster-Mäuse transferiert und die daraus entstandenen Embryonen am Tag 16 der Embryonalentwicklung (E16.5) analysiert. Dazu wurde gDNA aus verschiedenen embryonalen Geweben isoliert und mittels humanspezifischer quantitativer real-time PCR (qPCR) die Verteilung sowie das Ausmaß der humanen Donorkontribution bestimmt. Außerdem sollte der Differenzierungsstatus der humanen Zellen mittels in situ Hybridisierung und Antikörperfärbung analysiert werden... N2 - Mesenchymal stem cells (MSCs) are multipotent adult stem cells. They can be isolated from a multitude of tissues including bone marrow (BM), adipose tissue (AT) and cord blood (CB). MSCs gained special importance as potential cell source for novel stem cell-based therapies, because their isolation is relatively easy from patients and they can be expanded in vitro. Current attempts to use MSCs as therapeutic are based on their developmental potential, which includes mesenchymal cell types, for example adipocytes, chondrocytes and osteoblasts as well as the non-mesenchymal cell types like hepatocytes and neural cell types. The developmental potential of MSCs towards non-mesenchymal cell types is controversial and so far often only showed in vitro. Further, it is not clear whether MSCs from different tissue origins have the same developmental potential. Hence the aim of this thesis was to evaluate and compare the in vivo differentiation potential of human MSCs from CB, BM and AT. Therefore MSCs were injected in murine embryonic day 3.5 blastocysts. Then the blastocysts were transferred into foster mice and the developing E 16.5 embryos were analyzed. For this analysis gDNA from a variety of embryonic tissues was isolated. Distribution and degree of human donor contribution was determined by quantification of the human gDNA sequences in the samples with human specific quantitative real-time polymerase chain reaction (qPCR). In addition it was planned to analyze the differentiation status of the human cells by immunhistochemistry and in situ hybridization ... KW - Stammzelle KW - Mesenchym KW - Zelldifferenzierung KW - mesenchymale Stammzellen KW - MSC KW - Blastozysteninjektion KW - Seneszenz KW - humanes Serum KW - Entwicklungspotential KW - mesenchymal stem cells KW - blastocyst injection KW - senescence KW - human serum KW - developmental potential Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-70401 ER - TY - JOUR A1 - Hönnemann, Jan A1 - Sanz-Moreno, Adrian A1 - Wolf, Elmar A1 - Eilers, Martin A1 - Elsässer, Hans-Peter T1 - Miz1 Is a Critical Repressor of cdkn1a during Skin Tumorigenesis JF - PLoS One N2 - The transcription factor Miz1 forms repressive DNA-binding complexes with the Myc, Gfi-1 and Bcl-6 oncoproteins. Known target genes of these complexes encode the cyclin-dependent kinase inhibitors (CKIs) cdkn2b (p15\(^{Ink4}\)), cdkn1a (p21\(^{Cip1}\)), and cdkn1c (p57\(^{Kip2}\)). Whether Miz1-mediated repression is important for control of cell proliferation in vivo and for tumor formation is unknown. Here we show that deletion of the Miz1 POZ domain, which is critical for Miz1 function, restrains the development of skin tumors in a model of chemically-induced, Ras-dependent tumorigenesis. While the stem cell compartment appears unaffected, interfollicular keratinocytes lacking functional Miz1 exhibit a reduced proliferation and an accelerated differentiation of the epidermis in response to the tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA). Tumorigenesis, proliferation and normal differentiation are restored in animals lacking cdkn1a, but not in those lacking cdkn2b. Our data demonstrate that Miz1-mediated attenuation of cell cycle arrest pathways via repression of cdkn1a has a critical role during tumorigenesis in the skin. KW - transcription factor MIZ-1 KW - cell-cycle arrest KW - c-myc KW - tumor suppressor KW - cancer cells KW - POZ domain KW - P21 KW - differentiation KW - P15(INK4B) KW - senescence Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-133285 VL - 7 IS - 4 ER - 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 - Timofeev, Oleg A1 - Schlereth, Katharina A1 - Wanzel, Michael A1 - Braun, Attila A1 - Nieswandt, Bernhard A1 - Pagenstecher, Axel A1 - Rosenwald, Andreas A1 - Elsässer, Hans-Peter A1 - Stiewe, Thorsten T1 - p53 DNA Binding Cooperativity Is Essential for Apoptosis and Tumor Suppression In Vivo JF - Cell Reports N2 - Four molecules of the tumor suppressor p53 assemble to cooperatively bind proapoptotic target genes. The structural basis for cooperativity consists of interactions between adjacent DNA binding domains. Mutations at the interaction interface that compromise cooperativity were identified in cancer patients, suggesting a requirement of cooperativity for tumor suppression. We report on an analysis of cooperativity mutant p53(E177R) mice. Apoptotic functions of p53 triggered by DNA damage and oncogenes were abolished in these mice, whereas functions in cell-cycle control, senescence, metabolism, and antioxidant defense were retained and were sufficient to suppress development of spontaneous T cell lymphoma. Cooperativity mutant mice are nevertheless highly cancer prone and susceptible to different oncogene-induced tumors. Our data underscore the relevance of DNA binding cooperativity for p53-dependent apoptosis and tumor suppression and highlight cooperativity mutations as a class of p53 mutations that result in a selective loss of apoptotic functions due to an altered quaternary structure of the p53 tetramer. KW - mutant p53 KW - senescence KW - mice KW - tumorigenesis KW - restoration KW - damage responses KW - antioxidant function KW - p53-inducible regulator KW - p53-dependent apoptosis KW - cell-cycle arrest Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-122168 VL - 3 ER - TY - JOUR A1 - Salvador, Ellaine A1 - Burek, Malgorzata A1 - Löhr, Mario A1 - Nagai, Michiaki A1 - Hagemann, Carsten A1 - Förster, Carola Y. T1 - Senescence and associated blood-brain barrier alterations in vitro JF - Histochemistry and Cell Biology N2 - Progressive deterioration of the central nervous system (CNS) is commonly associated with aging. An important component of the neurovasculature is the blood-brain barrier (BBB), majorly made up of endothelial cells joined together by intercellular junctions. The relationship between senescence and changes in the BBB has not yet been thoroughly explored. Moreover, the lack of in vitro models for the study of the mechanisms involved in those changes impede further and more in-depth investigations in the field. For this reason, we herein present an in vitro model of the senescent BBB and an initial attempt to identify senescence-associated alterations within. KW - senescence KW - in vitro model KW - aging KW - CNS diseases KW - blood–brain barrier Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-267435 SN - 1432-119X VL - 156 IS - 3 ER -