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BRCA1 Forms a Functional Complex with γ-H2AX as a Late Response to Genotoxic Stress

机译:BRCA1与γ-H2AX形成功能性复合物作为对遗传毒性胁迫的后期反应

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摘要

Following genotoxic stress, the histone H2AX becomes phosphorylated at serine 139 by the ATM/ATR family of kinases. The tumor suppressor BRCA1, also phosphorylated by ATM/ATR kinases, is one of several proteins that colocalize with phospho-H2AX (γ-H2AX) at sites of active DNA repair. Both the precise mechanism and the purpose of BRCA1 recruitment to sites of DNA damage are unknown. Here we show that BRCA1 and γ-H2AX form an acid-stable biochemical complex on chromatin after DNA damage. Maximal association of BRCA1 with γ-H2AX correlates with reduced global γ-H2AX levels on chromatin late in the repair process. Since BRCA1 is known to have E3 ubiquitin ligase activity in vitro, we examined H2AX for evidence of ubiquitination. We found that H2AX is ubiquitinated at lysines 119 and 119 in vivo and that blockage of 26S proteasome function stabilizes γ-H2AX levels within cells. When BRCA1 levels were reduced, ubiquitination of H2AX was also reduced, and the cells retained higher levels of phosphorylated H2AX. These results indicate that BRCA1 is recruited into stable complexes with γ-H2AX and that the complex is involved in attenuation of the γ-H2AX repair signal after DNA damage.
机译:在产生基因毒性后,组蛋白H2AX被ATM / ATR激酶家族的丝氨酸139磷酸化。肿瘤抑制物BRCA1也被ATM / ATR激酶磷酸化,是与磷酸H2AX(γ-H2AX)共定位在活性DNA修复位点的几种蛋白质之一。 BRCA1募集到DNA损伤部位的确切机制和目的均未知。在这里,我们显示了DNA损伤后,BRCA1和γ-H2AX在染色质上形成了酸稳定的生化复合物。 BRCA1与γ-H2AX的最大关联与修复过程后期染色质上的整体γ-H2AX水平降低相关。由于已知BRCA1在体外具有E3泛素连接酶活性,因此我们检查了H2AX的泛素化证据。我们发现H2AX在体内的赖氨酸119和119处被泛素化,并且26S蛋白酶体功能的阻滞稳定了细胞内γ-H2AX的水平。当BRCA1水平降低时,H2AX的泛素化作用也降低,并且细胞保留了更高水平的磷酸化H2AX。这些结果表明BRCA1被募集为与γ-H2AX的稳定复合物,并且该复合物参与DNA损伤后γ-H2AX修复信号的衰减。

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