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NFBD1/MDC1、53BP1和BRCA1在ATM信号通路中既有冗余作用又有独特作用。

NFBD1/MDC1, 53BP1 and BRCA1 have both redundant and unique roles in the ATM pathway.

作者信息

Wilson Kathleen A, Stern David F

机构信息

Department of Pathology and Graduate Program in Genetics, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

Cell Cycle. 2008 Nov 15;7(22):3584-94. doi: 10.4161/cc.7.22.7102. Epub 2008 Nov 29.

Abstract

NFBD1/MDC1, 53BP1 and BRCA1 are DNA damage checkpoint proteins with twin BRCT domains. In order to determine if they have redundant roles in responses to ionizing radiation, we used siRNA and shRNA to deplete NFBD1, 53BP1 and BRCA1 in single, double and triple combinations. These analyses were performed in early passage human foreskin fibroblasts so that checkpoint responses could be assessed in a normal genetic background. We report that NFBD1, 53BP1 and BRCA1 have both unique and redundant functions in radiation-induced phosphorylation and localization events in the ATM-Chk2 pathway. 53BP1, but not NFBD1 and BRCA1, mediates ionizing radiation-induced ATM S1981 autophosphorylation. In contrast, all three mediators collaborate to promote IR-induced Chk2 T68 phosphorylation. NFBD1 and 53BP1, but not BRCA1, work together to mediate pATMS1981, pChk2T68 and NBS1 ionizing radiation induced foci (IRIF). However, the relative importance of NFBD1 and 53BP1 in IRIF formation differ. We also determined the interdependence among mediators in IRIF recruitment. We extend previous findings in cancer cells and mouse cells that NFBD1 is upstream of 53BP1 and BRCA1 to primary human cells. Furthermore, NFBD1 promotes BRCA1 IRIF through both 53BP1-dependent and 53BP1-independent mechanisms.

摘要

NFBD1/MDC1、53BP1和BRCA1是具有双BRCT结构域的DNA损伤检查点蛋白。为了确定它们在对电离辐射的反应中是否具有冗余作用,我们使用小干扰RNA(siRNA)和短发夹RNA(shRNA)以单一、双重和三重组合的方式耗尽NFBD1、53BP1和BRCA1。这些分析在早期传代的人包皮成纤维细胞中进行,以便在正常遗传背景下评估检查点反应。我们报告,NFBD1、53BP1和BRCA1在ATM-Chk2途径的辐射诱导磷酸化和定位事件中具有独特和冗余的功能。53BP1介导电离辐射诱导的ATM S1981自身磷酸化,而NFBD1和BRCA1则不介导。相反,所有这三种介质协同促进电离辐射诱导的Chk2 T68磷酸化。NFBD1和53BP1共同作用介导pATMS1981、pChk2T68和NBS1电离辐射诱导灶(IRIF),而BRCA1则不然。然而,NFBD1和53BP1在IRIF形成中的相对重要性不同。我们还确定了IRIF募集过程中介质之间的相互依赖性。我们将先前在癌细胞和小鼠细胞中的研究结果扩展到原代人类细胞,即NFBD1在53BP1和BRCA1的上游。此外,NFBD1通过依赖53BP1和不依赖53BP所的机制促进BRCA1 IRIF的形成。

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