4.6 Article

The Notch regulator MAML1 interacts with p53 and functions as a coactivator

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 282, 期 16, 页码 11969-11981

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M608974200

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资金

  1. NCI NIH HHS [R01 CA096986-04, CA81076, CA99163, CA94143, R01 CA095221-05, R01 CA095221-01A1, R01 CA096986-01A1, R01 CA097148, R01 CA096986-05, R01 CA096986-02, R01 CA095221-04, CA87986, CA99900, T32CA70085, R01 CA095221-02, CA96844, R01 CA096986-03, R01 CA095221-03, CA76118] Funding Source: Medline

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Members of the evolutionarily conserved Mastermind (MAM) protein family, including the three related mammalian Master-mind-like (MAML) proteins MAML1-3, function as crucial coactivators of Notch-mediated transcriptional activation. Given the recent evidence of cross-talk between the p53 and Notch signal transduction pathways, we have investigated whether MAML1 may also be a transcriptional coactivator of p53. Indeed, we show here that MAML1 is able to interact with p53. We show that MAML1-p53 interaction involves the N-terminal region of MAML1 and the DNA-binding domain of p53, and we use a chromatin immunoprecipitation assay to show that MAML1 is part of the activator complex that binds to native p53-response elements within the promoter of the p53 target genes. Overexpression of wild-type MAML1 as well as a mutant, defective in Notch signaling, enhanced the p53-dependent gene induction in mammalian cells, whereas MAML1 knockdown reduced the p53-dependent gene expression. MAML1 increases the half-life of p53 protein and enhances its phosphorylation/acetylation upon DNA damage of cells. Finally, RNA interference-mediated knockdown of the single Caenorhabditis elegans MAML homolog, Lag-3, led to substantial abrogation of p53-mediated germ-cell apoptotic response to DNA damage and markedly reduced the expression of Ced-13 and Egl-1, downstream pro-apoptotic targets of the C. elegans p53 homolog Cep-1. Thus, we present evidence for a novel coactivator function of MAML1 for p53, independent of its function as a coactivator of Notch signaling pathway.

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