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    Date Issued2015 (1)2012 (1)Author
    Schirmacher, Peter (2)
    Barsotti, Anthony M. (1)Breuhahn, Kai (1)Bussemaker, Harmen J. (1)Coutavas, Elias (1)View MoreUMass Chan AffiliationDepartment of Biochemistry and Molecular Pharmacology (1)Department of Molecular, Cell and Cancer Biology (1)RNA Therapeutics Institute (1)Document TypeJournal Article (2)KeywordCancer Biology (2)Cell Biology (2)*RNA Processing, Post-Transcriptional (1)14-3-3 Proteins (1)3' Untranslated Regions (1)View MoreJournalCancer cell (1)Molecular cell (1)

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    NEMO Prevents Steatohepatitis and Hepatocellular Carcinoma by Inhibiting RIPK1 Kinase Activity-Mediated Hepatocyte Apoptosis

    Kondylis, Vangelis; Polykratis, Apostolos; Ehlken, Hanno; Ochoa-Callejero, Laura; Straub, Beate Katharina; Krishna-Subramanian, Santosh; Van, Trieu-My; Curth, Harald-Morten; Heise, Nicole; Weih, Falk; et al. (2015-11-09)
    IkappaB kinase/necrosis factor kappaB (IKK/NF-kappaB) signaling exhibits important yet opposing functions in hepatocarcinogenesis. Mice lacking NEMO in liver parenchymal cells (LPC) spontaneously develop steatohepatitis and hepatocellular carcinoma (HCC) suggesting that NF-kappaB prevents liver disease and cancer. Here, we show that complete NF-kappaB inhibition by combined LPC-specific ablation of RelA, c-Rel, and RelB did not phenocopy NEMO deficiency, but constitutively active IKK2-mediated NF-kappaB activation prevented hepatocellular damage and HCC in NEMO(LPC-KO) mice. Knock-in expression of kinase inactive receptor-interacting protein kinase 1 (RIPK1) prevented hepatocyte apoptosis and HCC, while RIPK1 ablation induced TNFR1-associated death domain protein (TRADD)-dependent hepatocyte apoptosis and liver tumors in NEMO(LPC-KO) mice, revealing distinct kinase-dependent and scaffolding functions of RIPK1. Collectively, these results show that NEMO prevents hepatocarcinogenesis by inhibiting RIPK1 kinase activity-driven hepatocyte apoptosis through NF-kappaB-dependent and -independent functions.
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    Nuclear pore component Nup98 is a potential tumor suppressor and regulates posttranscriptional expression of select p53 target genes

    Singer, Stephan; Zhao, Ruiying; Barsotti, Anthony M.; Ouwehand, Anette; Fazollahi, Mina; Coutavas, Elias; Breuhahn, Kai; Neumann, Olaf; Longerich, Thomas; Pusterla, Tobias; et al. (2012-12-14)
    The p53 tumor suppressor utilizes multiple mechanisms to selectively regulate its myriad target genes, which in turn mediate diverse cellular processes. Here, using conventional and single-molecule mRNA analyses, we demonstrate that the nucleoporin Nup98 is required for full expression of p21, a key effector of the p53 pathway, but not several other p53 target genes. Nup98 regulates p21 mRNA levels by a posttranscriptional mechanism in which a complex containing Nup98 and the p21 mRNA 3'UTR protects p21 mRNA from degradation by the exosome. An in silico approach revealed another p53 target (14-3-3sigma) to be similarly regulated by Nup98. The expression of Nup98 is reduced in murine and human hepatocellular carcinomas (HCCs) and correlates with p21 expression in HCC patients. Our study elucidates a previously unrecognized function of wild-type Nup98 in regulating select p53 target genes that is distinct from the well-characterized oncogenic properties of Nup98 fusion proteins.
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