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首页> 外文期刊>Human mutation >Deficiency in DNA mismatch repair increases the rate of telomere shortening in normal human cells.
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Deficiency in DNA mismatch repair increases the rate of telomere shortening in normal human cells.

机译:DNA错配修复的缺陷会增加正常人细胞中端粒缩短的速率。

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摘要

DNA mismatch repair (MMR) is essential for genome stability and inheritance of a mutated MMR gene, most frequently MSH2 or MLH1, results in cancer predisposition known as Lynch syndrome or hereditary nonpolyposis colorectal cancer (HNPCC). Tumors that arise through MMR deficiency show instability at simple tandem repeat loci (STRs) throughout the genome, known as microsatellite instability (MSI). The STR instability is dominated by errors that accumulate during replication in the absence of effective MMR. In this study we show that there is a high level of instability within telomeric DNA with a tendency toward deletions in tumor-derived MMR defective cell lines. We downregulated MSH2 expression in a normal fibroblast cell line and isolated four clones, with differing levels of MSH2 depletion. The telomere-shortening rate was measured at the Xp/Yp, 12q, and 17p telomeres in the MSH2 depleted and three control clones. Interestingly the mean telomere-shortening rate in the clones with MSH2 depletion was significantly greater than in the control clones. This is the first demonstration that MSH2 deficiency alone can lead to accelerated telomere shortening in normal human cells.
机译:DNA错配修复(MMR)对于基因组稳定性和突变的MMR基因(最常见的是MSH2或MLH1)的遗传至关重要,这会导致被称为Lynch综合征或遗传性非息肉性结直肠癌(HNPCC)的癌症易感性。由于MMR缺乏而引起的肿瘤在整个基因组中的简单串联重复基因座(STR)处显示不稳定性,称为微卫星不稳定性(MSI)。在没有有效MMR的情况下,复制过程中累积的错误会导致STR不稳定性。在这项研究中,我们表明端粒DNA内存在高度的不稳定性,并且在肿瘤衍生的MMR缺陷细胞系中倾向于缺失。我们下调正常成纤维细胞细胞系中的MSH2表达,并分离出四个MSH2耗竭水平不同的克隆。端粒缩短率是在耗尽MSH2和三个对照克隆的Xp / Yp,12q和17p端粒下测得的。有趣的是,MSH2耗竭的克隆中平均端粒缩短率显着高于对照克隆。这是第一个证明,单独的MSH2缺乏会导致正常人细胞中端粒加速缩短。

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