首页> 外文期刊>Nucleic Acids Research >Ionizing radiation-dependent and independent phosphorylation of the 32-kDa subunit of replication protein A during mitosis.
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Ionizing radiation-dependent and independent phosphorylation of the 32-kDa subunit of replication protein A during mitosis.

机译:在有丝分裂过程中复制蛋白A的32 kDa亚基的电离辐射依赖性和独立磷酸化作用。

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摘要

The human single-stranded DNA-binding protein, replication protein A (RPA), is regulated by the N-terminal phosphorylation of its 32-kDa subunit, RPA2. RPA2 is hyperphosphorylated in response to various DNA-damaging agents and also phosphorylated in a cell-cycle-dependent manner during S- and M-phase, primarily at two CDK consensus sites, S23 and S29. Here we generated two monoclonal phospho-specific antibodies directed against these CDK sites. These phospho-specific RPA2-(P)-S23 and RPA2-(P)-S29 antibodies recognized mitotically phosphorylated RPA2 with high specificity. In addition, the RPA2-(P)-S23 antibody recognized the S-phase-specific phosphorylation of RPA2, suggesting that during S-phase only S23 is phosphorylated, whereas during M-phase both CDK sites, S23 and S29, are phosphorylated. Immunofluorescence microscopy revealed that the mitotic phosphorylation of RPA2 starts at the onset of mitosis, and dephosphorylation occurs during late cytokinesis. In mitotic cells treated with ionizing radiation (IR), we observed a rapid hyperphosphorylation of RPA2 in addition to its mitotic phosphorylation at S23 and S29, associated with a significant change in the subcellular localization of RPA. Our data also indicate that the RPA2 hyperphosphorylation in response to IR is facilitated by the activity of both ATM and DNA-PK, and is associated with activation of the Chk2 pathway.
机译:人单链DNA结合蛋白复制蛋白A(RPA)受其32 kDa亚基RPA2的N端磷酸化作用调节。 RPA2响应各种DNA破坏剂而被过度磷酸化,并且在S和M期(主要在两个CDK共有位点S23和S29)以依赖细胞周期的方式被磷酸化。在这里,我们生成了针对这些CDK位点的两种单克隆磷酸化特异性抗体。这些磷酸特异性RPA2-(P)-S23和RPA2-(P)-S29抗体以高特异性识别有丝分裂磷酸化的RPA2。另外,RPA2-(P)-S23抗体识别RPA2的S相特异性磷酸化,这表明在S相期间仅S23被磷酸化,而在M相期间CDK位点S23和S29均被磷酸化。免疫荧光显微镜检查显示RPA2的有丝分裂磷酸化始于有丝分裂的开始,并且在晚期胞质分裂过程中发生去磷酸化。在用电离辐射(IR)处理的有丝分裂细胞中,我们观察到RPA2的快速超磷酸化以及S23和S29处的有丝分裂磷酸化,与RPA的亚细胞定位发生重大变化有关。我们的数据还表明,ATM和DNA-PK的活性都促进了响应IR的RPA2过度磷酸化,并且与Chk2途径的激活有关。

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