首页> 外文期刊>Cell cycle >Cut1/separase-dependent roles of multiple phosphorylation of fission yeast cohesion subunit Rad21 in post-replicative damage repair and mitosis.
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Cut1/separase-dependent roles of multiple phosphorylation of fission yeast cohesion subunit Rad21 in post-replicative damage repair and mitosis.

机译:在复制后的损伤修复和有丝分裂中,裂殖酵母凝聚亚基Rad21的多个磷酸化的Cut1 / separase依赖性作用。

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Cohesin is a multiprotein complex essential for sister-chromatid cohesion. It plays a pivotal role in proper chromosome segregation and DNA damage repair. The mitotic behavior of cohesin is controlled through its phosphorylation, which possibly induces the dissociation of cohesin from chromosomes and enhances its susceptibility to separase. Here, we report using mass spectrometry and anti-phospho antibodies that the central domain of Rad21, the separase-target subunit of Schizosaccharomyces pombe cohesin, is regulated by various kinase-induced phosphorylation at nine residues, indicating the multiple roles for S. pombe cohesin. In vegetative and non-dividing G(0) cells, Rad21 is phosphorylated by unknown S/TP-consensus kinases, in mitotic and non-mitotic cells by polo/Plo1 and CDK, and in DNA-damaged cells by Rad3/ATR. While mitotic phosphorylation is implicated in the dissociation of Rad21 and its cleavage by separase in anaphase, the Rad3/ATR-dependent damage-induced phosphorylation occurs intensively at the time of repair completion, and only in post-replicative cells. This damage-induced Rad21 phosphorylation is involved in the recovery process of cells from checkpoint arrest, and needed for the removal of cohesin by separase after the completion of damage repair. These complex phospho-regulations of Rad21 indicate the functional significance of cohesin in cell adaptation to a variety of cellular conditions.
机译:粘着蛋白是姐妹染色单体粘着必不可少的多蛋白复合物。它在正确的染色体分离和DNA损伤修复中起关键作用。粘着蛋白的有丝分裂行为通过其磷酸化来控制,这可能诱导粘着蛋白从染色体上解离,并增强其对分离酶的敏感性。在这里,我们报告使用质谱和抗磷酸抗体,Rad21的中央结构域,裂殖酵母粟粒黏着蛋白的分离酶-靶标亚基,受多种激酶诱导的9个残基磷酸化的调控,表明粟酒荚膜黏菌的多重作用。在营养性和非分裂性G(0)细胞中,Rad21被未知的S / TP共有激酶磷酸化,在有丝分裂和非有丝分裂细胞中被polo / Plo1和CDK磷酸化,而在DNA损伤的细胞中被Rad3 / ATR磷酸化。尽管有丝分裂磷酸化与Rad21的解离及其后期的分离酶的裂解有关,但Rad3 / ATR依赖性损伤诱导的磷酸化在修复完成时集中发生,并且仅在复制后细胞中发生。这种损伤诱导的Rad21磷酸化参与了从关卡停滞中恢复细胞的过程,并且在损伤修复完成后需要用Separase去除粘着蛋白。 Rad21的这些复杂的磷酸调节表明黏着蛋白在细胞适应多种细胞条件中的功能意义。

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