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RPA70 depletion induces hSSB1/2-INTS3 complex to initiate ATR signaling

机译:RPA70耗尽诱导hSSB1 / 2-INTS3复合体启动ATR信号传导

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摘要

The primary eukaryotic single-stranded DNA-binding protein, Replication protein A (RPA), binds to single-stranded DNA at the sites of DNA damage and recruits the apical checkpoint kinase, ATR via its partner protein, ATRIP. It has been demonstrated that absence of RPA incapacitates the ATR-mediated checkpoint response. We report that in the absence of RPA, human single-stranded DNA-binding protein 1 (hSSB1) and its partner protein INTS3 form sub-nuclear foci, associate with the ATR-ATRIP complex and recruit it to the sites of genomic stress. The ATRIP foci formed after RPA depletion are abrogated in the absence of INTS3, establishing that hSSB-INTS3 complex recruits the ATR-ATRIP checkpoint complex to the sites of genomic stress. Depletion of homologs hSSB1/2 and INTS3 in RPA-deficient cells attenuates Chk1 phosphorylation, indicating that the cells are debilitated in responding to stress. We have identified that TopBP1 and the Rad9-Rad1-Hus1 complex are essential for the alternate mode of ATR activation. In summation, we report that the single-stranded DNA-binding protein complex, hSSB1/2-INTS3 can recruit the checkpoint complex to initiate ATR signaling.
机译:初级真核单链DNA结合蛋白复制蛋白A(RPA)在DNA损伤部位与单链DNA结合,并通过其伴侣蛋白ATRIP募集根尖检查点激酶ATR。已经证明,缺少RPA会使ATR介导的检查点反应失效。我们报告说,在没有RPA的情况下,人单链DNA结合蛋白1(hSSB1)及其伴侣蛋白INTS3形成亚核灶,与ATR-ATRIP复合物缔合并将其募集到基因组应激位点。在不存在INTS3的情况下,消除了RPA耗尽后形成的ATRIP病灶,这证明hSSB-INTS3复合物将ATR-ATRIP检查点复合物募集到基因组应激位点。 RPA缺陷型细胞中的同系物hSSB1 / 2和INTS3的耗尽会减弱Chk1磷酸化,表明细胞在应对压力时变得虚弱。我们已经确定TopBP1和​​Rad9-Rad1-Hus1复合体对于ATR激活的替代模式至关重要。总之,我们报告单链DNA结合蛋白复合体hSSB1 / 2-INTS3可以募集检查点复合体以启动ATR信号传导。

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