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Identification of senescence-associated genes and their networks under oxidative stress by the analysis of Bach1.

机译:通过分析Bach1鉴定氧化应激下的衰老相关基因及其网络。

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Cellular senescence is induced in response to DNA damage, caused by genotoxic stresses, including oxidative stress, and serves as a barrier against malignant transformation. Tumor-suppressor protein p53 induces genes critical for implementing cellular senescence. However, the identities of p53 target genes and other regulators that achieve senescence under oxidative stress remain to be elucidated. Effector genes for oxidative stress-induced cellular senescence were sought, based on the fact that transcription factor Bach1 inhibits this response by impeding the transcriptional activity of p53. pRb became hypophosphorylated more rapidly in Bach1-deficient MEFs than in wild-type cells, suggesting that pRb activation was involved in their senescence. Bach1-deficient MEFs bypassed the senescence state when the expression of a subset of p53 target genes, including p21, Pai1, Noxa, and Perp, was simultaneously reduced by using RNAi. Combined knockdown of p21 and pRb resulted in vigorous re-proliferation. These results suggest that oxidative stress-induced cellular senescence is registered by multiple p53 target genes, which arrest proliferation redundantly, in part by activating pRb. Our elucidations contrast with previous reports describing monopolistic regulations of senescence by single p53 target genes.
机译:细胞衰老是对遗传毒性应激(包括氧化应激)引起的DNA损伤的响应而诱导的,并充当阻止恶性转化的屏障。肿瘤抑制蛋白p53诱导实现细胞衰老的关键基因。然而,p53靶基因和其他调节剂在氧化应激下达到衰老的身份仍有待阐明。基于转录因子Bach1通过阻碍p53的转录活性来抑制这种应答这一事实,寻求了氧化应激诱导的细胞衰老的效应基因。在缺乏Bach1的MEF中,pRb的磷酸化速度比野生型细胞更快,这表明pRb的激活与其衰老有关。当使用RNAi同时降低p53靶基因的一个子集(包括p21,Pai1,Noxa和Perp)的表达时,缺乏Bach1的MEF绕过了衰老状态。 p21和pRb的组合敲低导致剧烈的增殖。这些结果表明,氧化应激诱导的细胞衰老由多个p53靶基因记录,这些基因多余地阻止了增殖,部分是通过激活pRb来实现的。我们的阐明与以前的报道相反,该报道描述了单个p53靶基因对衰老的垄断规律。

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