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Senescence-Dependent MutS{alpha} Dysfunction Attenuates Mismatch Repair.

机译:衰老相关的MutS {alpha}功能障碍可减轻错配修复。

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DNA damage and mutations in the genome increase with age. To determine the potential mechanisms of senescence-dependent increases in genomic instability, we analyzed DNA mismatch repair (MMR) efficiency in young and senescent human colonic fibroblast and human embryonic lung fibroblast. It was found that MMR activity is significantly reduced in senescent cells. Western blot and immunohistochemistry analysis revealed that hMSH2 and MSH6 protein (MutSalpha complex), which is a known key component in the MMR pathway, is markedly down-regulated in senescent cells. Moreover, the addition of purified MutSalpha to extracts from senescent cells led to the restoration of MMR activity. Semiquantitative reverse transcription-PCR analysis exhibited that MSH2 mRNA level is reduced in senescent cells. In addition, a decrease in E2F transcriptional activity in senescent cells was found to be crucial for MSH2 suppression. E2F1 small interfering RNA expression reduced hMSH2 expression and MMR activity in young human primary fibroblast cells. Importantly, expression of E2F1 in quiescent cells restored the MSH2 expression as well as MMR activity, whereas E2F1-infected senescent cells exhibited no restoration of MSH2 expression and MMR activity. These results indicate that the suppression of E2F1 transcriptional activity in senescent cells lead to stable repression of MSH2, followed by a induction of MutSalpha dysfunction, which results in a reduced cellular MMR capacity in senescent cells. (Mol Cancer Res 2008;6(6):978-89).
机译:DNA损伤和基因组突变随年龄增长而增加。为了确定衰老依赖性基因组不稳定性增加的潜在机制,我们分析了年轻和衰老的人结肠成纤维细胞和人胚胎肺成纤维细胞中的DNA错配修复(MMR)效率。发现在衰老细胞中MMR活性显着降低。 Western印迹和免疫组织化学分析表明,hMSH2和MSH6蛋白(MutSalpha复合物)是MMR途径中的已知关键成分,在衰老细胞中明显下调。此外,将纯化的MutSalpha添加到衰老细胞的提取物中可导致MMR活性恢复。半定量逆转录-PCR分析显示衰老细胞中MSH2 mRNA水平降低。此外,发现衰老细胞中E2F转录活性的降低对MSH2抑制至关重要。 E2F1小干扰RNA表达降低了人类初生成纤维细胞中hMSH2的表达和MMR活性。重要的是,静态细胞中E2F1的表达恢复了MSH2表达以及MMR活性,而感染E2F1的衰老细胞则没有恢复MSH2表达和MMR活性。这些结果表明,衰老细胞中E2F1转录活性的抑制导致MSH2的稳定抑制,随后诱导MutSalpha功能障碍,从而导致衰老细胞中细胞MMR的能力降低。 (Mol Cancer Res 2008; 6(6):978-89)。

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