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细胞周期特异性切割 Scc2 调节其黏连蛋白沉积活性。

Cell cycle-specific cleavage of Scc2 regulates its cohesin deposition activity.

机构信息

Molecular Biology Program, andDepartment of Biochemistry and Molecular Genetics, University of Colorado School of Medicine, Aurora, CO 80045.

Department of Biochemistry and Molecular Genetics, University of Colorado School of Medicine, Aurora, CO 80045.

出版信息

Proc Natl Acad Sci U S A. 2014 May 13;111(19):7060-5. doi: 10.1073/pnas.1321722111. Epub 2014 Apr 28.

Abstract

Sister chromatid cohesion (SCC), efficient DNA repair, and the regulation of some metazoan genes require the association of cohesins with chromosomes. Cohesins are deposited by a conserved heterodimeric loading complex composed of the Scc2 and Scc4 proteins in Saccharomyces cerevisiae, but how the Scc2/Scc4 deposition complex regulates the spatiotemporal association of cohesin with chromosomes is not understood. We examined Scc2 chromatin association during the cell division cycle and found that the affinity of Scc2 for chromatin increases biphasically during the cell cycle, increasing first transiently in late G1 phase and then again later in G2/M. Inactivation of Scc2 following DNA replication reduces cellular viability, suggesting that this post S-phase increase in Scc2 chromatin binding affinity is biologically relevant. Interestingly, high and low Scc2 chromatin binding levels correlate strongly with the presence of full-length or amino-terminally cleaved forms of Scc2, respectively, and the appearance of the cleaved Scc2 species is promoted in vitro either by treatment with specific cell cycle-staged cellular extracts or by dephosphorylation. Importantly, Scc2 cleavage eliminates Scc2-Scc4 physical interactions, and an scc2 truncation mutant that mimics in vivo Scc2 cleavage is defective for cohesin deposition. These observations suggest a previously unidentified mechanism for the spatiotemporal regulation of cohesin association with chromosomes through cell cycle regulation of Scc2 cohesin deposition activity by Scc2 dephosphorylation and cleavage.

摘要

姐妹染色单体黏合(Sister chromatid cohesion,SCC)、有效的 DNA 修复以及一些后生动物基因的调控都需要黏合蛋白与染色体的结合。在酿酒酵母中,黏合蛋白是由 Scc2 和 Scc4 蛋白组成的保守异二聚体加载复合物沉积的,但 Scc2/Scc4 沉积复合物如何调节黏合蛋白与染色体的时空关联尚不清楚。我们在细胞分裂周期中检查了 Scc2 与染色质的关联,发现 Scc2 与染色质的亲和力在细胞周期中呈双相增加,首先在 G1 晚期短暂增加,然后在 G2/M 晚期再次增加。DNA 复制后 Scc2 的失活会降低细胞活力,这表明这种 S 期后 Scc2 染色质结合亲和力的增加在生物学上是相关的。有趣的是,高和低的 Scc2 染色质结合水平与全长或氨基末端切割形式的 Scc2 的存在密切相关,并且在体外,通过用特定的细胞周期阶段的细胞提取物处理或去磷酸化,均可促进切割 Scc2 物质的出现。重要的是,Scc2 切割消除了 Scc2-Scc4 物理相互作用,并且模拟体内 Scc2 切割的 scc2 截断突变体在黏合蛋白沉积方面存在缺陷。这些观察结果表明,通过 Scc2 去磷酸化和切割对 Scc2 黏合蛋白沉积活性的细胞周期调控,提供了一种以前未识别的机制,用于调节黏合蛋白与染色体的时空关联。

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Cell cycle-specific cleavage of Scc2 regulates its cohesin deposition activity.细胞周期特异性切割 Scc2 调节其黏连蛋白沉积活性。
Proc Natl Acad Sci U S A. 2014 May 13;111(19):7060-5. doi: 10.1073/pnas.1321722111. Epub 2014 Apr 28.
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本文引用的文献

8
In vitro assembly of physiological cohesin/DNA complexes.体外组装生理黏连蛋白/DNA 复合物。
Proc Natl Acad Sci U S A. 2011 Jul 26;108(30):12198-205. doi: 10.1073/pnas.1107504108. Epub 2011 Jun 13.
9
Affinity purification of protein complexes.蛋白质复合物的亲和纯化。
Cold Spring Harb Protoc. 2011 May 1;2011(5):pdb.prot5611. doi: 10.1101/pdb.prot5611.

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