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Hypoxic activation of ATR and the suppression of the initiation of DNA replication through cdc6 degradation

机译:ATR的缺氧激活和抑制通过CDC6降解的DNA复制启动

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Many severely hypoxic cells fail to initiate DNA replication, but the mechanism underlying this observation is unknown. Specifically, although the ataxia-telangiectasia-rad3 related (ATR) kinase has been shown to be activated in hypoxic cells, several studies have not been able to document down-stream consequences of ATR activation in these cells. By clearly defining the DNA replication initiation checkpoint in hypoxic cells, we now demonstrate that ATR is responsible for activating this checkpoint. We show that the hypoxic activation of ATR leads to the phosphorylation-dependent degradation of the cdc25a phosphatase. Downregulation of cdc25a protein by ATR in hypoxic cells decreases CDK2 phosphorylation and activity, which results in the degradation of cdc6 by APC/C~(Cdh1). These events do not occur in hypoxic cells when ATR is depleted, and the initiation of DNA replication is maintained. We therefore present a novel mechanism of cdc6 regulation in which ATR can have a central role in inhibiting the initiation of DNA replication by the regulation of cdc6 by APC/C~(Cdh1). This model provides insight into the biology and therapy of hypoxic tumors.
机译:许多严重的缺氧细胞未能启动DNA复制,但这种观察结果的机制是未知的。具体而言,尽管已经在缺氧细胞中被显示出在缺氧细胞中激活(ATR)激酶,但若干研究并未能够在这些细胞中记录ATR激活的下游后果。通过清楚地定义缺氧细胞中的DNA复制启动检查点,我们现在证明ATR负责激活该检查点。我们表明ATR的缺氧活化导致CDC25A磷酸酶的磷酸化依赖性降解。缺氧细胞ATR下调CDC25A蛋白质降低CDK2磷酸化和活性,这导致CDC6的降解通过APC / C〜(CDH1)。当ATR耗尽时,这些事件在缺氧细胞中不会发生,并且维持DNA复制的开始。因此,我们提出了一种新的CDC6调节机制,其中ATR可以在抑制CDC6的调节通过APC / C〜(CDH1)来具有核心作用。该模型提供对缺氧肿瘤的生物学和治疗的洞察力。

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