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人黏连蛋白-SA1 和黏连蛋白-SA2 在双链断裂修复中的不同功能。

Distinct functions of human cohesin-SA1 and cohesin-SA2 in double-strand break repair.

机构信息

Department of Biological Chemistry, School of Medicine, University of California, Irvine, California, USA.

出版信息

Mol Cell Biol. 2014 Feb;34(4):685-98. doi: 10.1128/MCB.01503-13. Epub 2013 Dec 9.

Abstract

Cohesin is an essential multiprotein complex that mediates sister chromatid cohesion critical for proper segregation of chromosomes during cell division. Cohesin is also involved in DNA double-strand break (DSB) repair. In mammalian cells, cohesin is involved in both DSB repair and the damage checkpoint response, although the relationship between these two functions is unclear. Two cohesins differing by one subunit (SA1 or SA2) are present in somatic cells, but their functional specificities with regard to DNA repair remain enigmatic. We found that cohesin-SA2 is the main complex corecruited with the cohesin-loading factor NIPBL to DNA damage sites in an S/G(2)-phase-specific manner. Replacing the diverged C-terminal region of SA1 with the corresponding region of SA2 confers this activity on SA1. Depletion of SA2 but not SA1 decreased sister chromatid homologous recombination repair and affected repair pathway choice, indicating that DNA repair activity is specifically associated with cohesin recruited to damage sites. In contrast, both cohesin complexes function in the intra-S checkpoint, indicating that cell cycle-specific damage site accumulation is not a prerequisite for cohesin's intra-S checkpoint function. Our findings reveal the unique ways in which cohesin-SA1 and cohesin-SA2 participate in the DNA damage response, coordinately protecting genome integrity in human cells.

摘要

黏连蛋白是一种必需的多蛋白复合物,介导姐妹染色单体黏合,对于细胞分裂过程中染色体的正确分离至关重要。黏连蛋白还参与 DNA 双链断裂 (DSB) 修复。在哺乳动物细胞中,黏连蛋白参与 DSB 修复和损伤检查点反应,尽管这两种功能之间的关系尚不清楚。两种黏连蛋白在一个亚基(SA1 或 SA2)上存在差异,存在于体细胞中,但它们在 DNA 修复方面的功能特异性仍然是个谜。我们发现,黏连蛋白-SA2 是与黏连蛋白加载因子 NIPBL 一起核心募集到 DNA 损伤部位的主要复合物,以 S/G2 期特异性方式募集。用 SA2 的相应区域替换 SA1 的分化 C 末端区域,赋予了 SA1 这种活性。SA2 的耗竭而不是 SA1 的耗竭减少了姐妹染色单体同源重组修复,并影响了修复途径的选择,表明 DNA 修复活性与募集到损伤部位的黏连蛋白特异性相关。相比之下,两个黏连蛋白复合物都在 S 期检查点中发挥作用,表明细胞周期特异性损伤部位积累不是黏连蛋白 S 期检查点功能的前提。我们的发现揭示了黏连蛋白-SA1 和黏连蛋白-SA2 参与 DNA 损伤反应的独特方式,共同协调保护人类细胞的基因组完整性。

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