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MDC1是S期内DNA损伤检查点所必需的。

MDC1 is required for the intra-S-phase DNA damage checkpoint.

作者信息

Goldberg Michal, Stucki Manuel, Falck Jacob, D'Amours Damien, Rahman Dinah, Pappin Darryl, Bartek Jiri, Jackson Stephen P

机构信息

The Wellcome Trust/Cancer Research UK Institute of Cancer and Developmental Biology and Department of Zoology, University of Cambridge, Cambridge CB2 1QR, UK.

出版信息

Nature. 2003 Feb 27;421(6926):952-6. doi: 10.1038/nature01445.

Abstract

MRE11, RAD50 and NBS1 form a highly conserved protein complex (the MRE11 complex) that is involved in the detection, signalling and repair of DNA damage. We identify MDC1 (KIAA0170/NFBD1), a protein that contains a forkhead-associated (FHA) domain and two BRCA1 carboxy-terminal (BRCT) domains, as a binding partner for the MRE11 complex. We show that, in response to ionizing radiation, MDC1 is hyperphosphorylated in an ATM-dependent manner, and rapidly relocalizes to nuclear foci that also contain the MRE11 complex, phosphorylated histone H2AX and 53BP1. Downregulation of MDC1 expression by small interfering RNA yields a radio-resistant DNA synthesis (RDS) phenotype and prevents ionizing radiation-induced focus formation by the MRE11 complex. However, downregulation of MDC1 does not abolish the ionizing radiation-induced phosphorylation of NBS1, CHK2 and SMC1, or the degradation of CDC25A. Furthermore, we show that overexpression of the MDC1 FHA domain interferes with focus formation by MDC1 itself and by the MRE11 complex, and induces an RDS phenotype. These findings reveal that MDC1-mediated focus formation by the MRE11 complex at sites of DNA damage is crucial for the efficient activation of the intra-S-phase checkpoint.

摘要

MRE11、RAD50和NBS1形成一个高度保守的蛋白质复合物(MRE11复合物),该复合物参与DNA损伤的检测、信号传导和修复。我们鉴定出MDC1(KIAA0170/NFBD1),一种含有叉头相关(FHA)结构域和两个BRCA1羧基末端(BRCT)结构域的蛋白质,作为MRE11复合物的结合伴侣。我们发现,在受到电离辐射时,MDC1以ATM依赖的方式发生超磷酸化,并迅速重新定位到也含有MRE11复合物、磷酸化组蛋白H2AX和53BP1的核灶中。通过小干扰RNA下调MDC1的表达会产生抗辐射DNA合成(RDS)表型,并阻止MRE11复合物形成电离辐射诱导的病灶。然而,下调MDC1并不会消除电离辐射诱导的NBS1、CHK2和SMC1的磷酸化,也不会消除CDC25A的降解。此外,我们发现MDC1 FHA结构域的过表达会干扰MDC1自身和MRE11复合物形成病灶,并诱导RDS表型。这些发现揭示了MDC1介导MRE11复合物在DNA损伤位点形成病灶对于S期内检查点的有效激活至关重要。

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