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首页> 外文期刊>Nature >MDC1 is coupled to activated CHK2 in mammalian DNA damage response pathways
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MDC1 is coupled to activated CHK2 in mammalian DNA damage response pathways

机译:MDC1与哺乳动物DNA损伤反应途径中的活化CHK2偶联

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Forkhead-homology-associated (FHA) domains function as protein-protein modules that recognize phosphorylated serine/threonine motifs(1-5). Interactions between FHA domains and phosphorylated proteins are thought to have essential roles in the transduction of DNA damage signals; however, it is unclear how FHA-domain-containing proteins participate in mammalian DNA damage responses. Here we report that a FHA-domain-containing protein-mediator of DNA damage checkpoint protein 1 (MDC1; previously known as KIAA0170)-is involved in DNA damage responses. MDC1 localizes to sites of DNA breaks and associates with CHK2 after DNA damage. This association is mediated by the MDC1 FHA domain and the phosphorylated Thr 68 of CHK2. Furthermore, MDC1 is phosphorylated in an ATM/CHK2-dependent manner after DNA damage, suggesting that MDC1 may function in the ATM-CHK2 pathway. Consistent with this hypothesis, suppression of MDC1 expression results in defective S-phase checkpoint and reduced apoptosis in response to DNA damage, which can be restored by the expression of wildtype MDC1 but not MDC1 with a deleted FHA domain. Suppression of MDC1 expression results in decreased p53 stabilization in response to DNA damage. These results suggest that MDC1 is recruited through its FHA domain to the activated CHK2, and has a critical role in CHK2-mediated DNA damage responses. [References: 30]
机译:前叉同源性相关(FHA)域起着识别磷酸化丝氨酸/苏氨酸基序的蛋白质-蛋白质模块的作用(1-5)。 FHA结构域和磷酸化蛋白之间的相互作用被认为在DNA损伤信号的转导中起着至关重要的作用。然而,尚不清楚含FHA结构域的蛋白质如何参与哺乳动物DNA损伤反应。在这里我们报告DNA损伤检查点蛋白1(MDC1;以前称为KIAA0170)的含FHA域的蛋白介体参与DNA损伤反应。 MDC1定位于DNA断裂位点,并在DNA损伤后与CHK2缔合。这种联系是由MDC1 FHA域和CHK2的磷酸化Thr 68介导的。此外,MDC1在DNA损伤后以ATM / CHK2依赖性方式被磷酸化,表明MDC1可能在ATM-CHK2途径中起作用。与此假设相符,抑制MDC1的表达会导致缺陷的S期检查点并减少对DNA损伤的反应而导致的凋亡,这可以通过表达野生型MDC1来恢复,而不能通过缺失FHA结构域的MDC1来恢复。 MDC1表达的抑制导致响应DNA损伤的p53稳定性下降。这些结果表明,MDC1通过其FHA结构域募集到活化的CHK2,并且在CHK2介导的DNA损伤应答中起关键作用。 [参考:30]

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