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首页> 外文期刊>The Journal of biological chemistry >Cohesin SA2 is a sequence-independent DNA-binding protein that recognizes DNA replication and repair intermediates
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Cohesin SA2 is a sequence-independent DNA-binding protein that recognizes DNA replication and repair intermediates

机译:Cohesin SA2是不依赖序列的DNA结合蛋白,可识别DNA复制和修复中间体

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Proper chromosome alignment and segregation during mitosis depend on cohesion between sister chromatids, mediated by the cohesin protein complex, which also plays crucial roles in diverse genome maintenance pathways. Current models attribute DNA binding by cohesin to entrapment of dsDNA by the cohesin ring subunits (SMC1, SMC3, and RAD21 in humans). However, the biophysical properties and activities of the fourth core cohesin subunit SA2 (STAG2) are largely unknown. Here, using single-molecule atomic force and fluorescence microscopy imaging as well as fluorescence anisotropy measurements, we established that SA2 binds to both dsDNA and ssDNA, albeit with a higher binding affinity for ssDNA. We observed that SA2 can switch between the 1D diffusing (search) mode on dsDNA and stable binding (recognition) mode at ssDNA gaps. Although SA2 does not specifically bind to centromeric or telomeric sequences, it does recognize DNA structures often associated with DNA replication and double-strand break repair, such as a double-stranded end, single-stranded overhang, flap, fork, and ssDNA gap. SA2 loss leads to a defect in homologous recombination–mediated DNA double-strand break repair. These results suggest that SA2 functions at intermediate DNA structures during DNA transactions in genome maintenance pathways. These findings have important implications for understanding the function of cohesin in these pathways.
机译:在有丝分裂过程中正确的染色体对齐和分离取决于由粘附素蛋白复合物介导的姐妹染色单体之间的凝聚力,这在多种基因组维持途径中也起着至关重要的作用。当前的模型将粘附素结合的DNA归因于粘附素环亚基(人类中的SMC1,SMC3和RAD21)截留dsDNA。但是,第四核心黏附素亚基SA2(STAG2)的生物物理特性和活性在很大程度上是未知的。在这里,使用单分子原子力和荧光显微镜成像以及荧光各向异性测量,我们确定SA2既与dsDNA也与ssDNA结合,尽管对ssDNA具有更高的结合亲和力。我们观察到SA2可以在dsDNA上的一维扩散(搜索)模式和在ssDNA缺口处的稳定结合(识别)模式之间切换。尽管SA2并不特异性结合于着丝粒或端粒序列,但它确实识别通常与DNA复制和双链断裂修复相关的DNA结构,例如双链末端,单链突出端,襟翼,叉子和ssDNA缺口。 SA2的丢失导致同源重组介导的DNA双链断裂修复缺陷。这些结果表明,SA2在基因组维持途径中的DNA交易过程中在中间DNA结构上起作用。这些发现对于理解粘着蛋白在这些途径中的功能具有重要意义。

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