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Spreading of mammalian DNA-damage response factors studied by ChIP-chip at damaged telomeres

机译:用ChIP芯片研究哺乳动物DNA损伤反应因子在端粒受损中的传播

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摘要

Phosphorylated histone H2AX (γH2AX) is generated in nucleosomes flanking sites of DNA double-strand breaks, triggering the recruitment of DNA-damage response proteins such as MDC1 and 53BP1. Here, we study shortened telomeres in senescent human cells. We show that most telomeres trigger γH2AX formation, which spreads up to 570 kb into the subtelomeric regions. Furthermore, we reveal that the spreading patterns of 53BP1 and MDC1 are very similar to that of γH2AX, consistent with a structural link between these factors. Moreover, different subsets of telomeres signal in different cell lines, with those that signal tending to equate to the shortest telomeres of the corresponding cell line, thus linking telomere attrition with DNA-damage signalling. Notably, we find that, in some cases, γH2AX spreading is modulated in a manner suggesting that H2AX distribution or its ability to be phosphorylated is not uniform along the chromosome. Finally, we observe weak γH2AX signals at telomeres of proliferating cells, but not in hTERT immortalised cells, suggesting that low telomerase activity leads to telomere uncapping and senescence in proliferating primary cells.
机译:磷酸化的组蛋白H2AX(γH2AX)在DNA双链断裂的核小体侧翼位点产生,触发了DNA损伤反应蛋白(如MDC1和53BP1)的募集。在这里,我们研究衰老的人类细胞中的端粒缩短。我们表明,大多数端粒触发γH2AX形成,其扩散到亚端粒区域达570 kb。此外,我们揭示了53BP1和MDC1的扩散模式与γH2AX非常相似,这与这些因素之间的结构联系一致。而且,端粒的不同子集在不同细胞系中发出信号,而那些信号集趋于等同于相应细胞系中最短的端粒,从而将端粒耗损与DNA损伤信号传递联系起来。值得注意的是,我们发现,在某些情况下,γH2AX扩散以某种方式被调节,这表明H2AX分布或其被磷酸化的能力沿染色体不均匀。最后,我们在增殖细胞的端粒观察到弱的γH2AX信号,而在hTERT永生化细胞中观察不到,表明端粒酶活性低会导致增殖的原代细胞端粒解封和衰老。

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