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Identification of p53 regulators by genome-wide functional analysis

机译:通过全基因组功能分析鉴定p53调节剂

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The p53 tumor-suppressor protein is a critical mediator of cellular growth arrest and the induction of apoptosis. To identify proteins involved in the modulation of p53 transcriptional activity, a gain-of-function cellular screen was carried out with an arrayed matrix of approximate to20,000 cDNAs. Nine genes previously unknown to be involved in regulating p53 activity were identified. Overexpression of seven of these genes (Hey1, Hes1, TFAP4, Osr1, NR2F2, SFRS10, and FLJ11339) resulted in up-regulation of p53 activity; overexpression of two genes (M17S2 and cathepsin B) resulted in down-regulation of p53 activity in mammalian cells. HES1, HEY1, and TFAP4, which are members of the basic helix-loop-helix transcription family, and OSR1 were shown to activate p53 through repression of HDM2 transcription. Ectopic expression of these basic helix-loop-helix transcription factors in both zebrafish and avian developmental systems activated p53 and induced apoptosis in vivo, resulting in a phenotype similar to that of p53 overexpression. Furthermore, ras- and myc-mediated transformation of mouse embryonic fibroblasts was abrogated by expression of HEY1 in a p53-dependent manner. These results suggest that these transcription factors are members of an evolutionarily conserved network that governs p53 function. [References: 44]
机译:p53肿瘤抑制蛋白是细胞生长停滞和细胞凋亡诱导的关键介质。为了鉴定参与调节p53转录活性的蛋白质,使用大约20,000个cDNA的阵列矩阵进行了功能增强的细胞筛选。确定了九个以前未知的基因参与调控p53活性。这些基因中的七个(Hey1,Hes1,TFAP4,Osr1,NR2F2,SFRS10和FLJ11339)的过表达导致p53活性上调。两个基因(M17S2和组织蛋白酶B)的过表达导致哺乳动物细胞中p53活性的下调。 HES1,HEY1和TFAP4是基本螺旋-环-螺旋转录家族的成员,而OSR1被显示通过抑制HDM2转录激活p53。这些基本的螺旋-环-螺旋转录因子在斑马鱼和鸟类发育系统中的异位表达均激活p53并诱导体内凋亡,导致其表型与p53过表达相似。此外,ras和myc介导的小鼠胚胎成纤维细胞转化通过以p53依赖性方式表达HEY1而被废止。这些结果表明这些转录因子是控制p53功能的进化保守网络的成员。 [参考:44]

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