蛋白酶体核活性通过控制对 DNA 修复重要的蛋白质 Mms22 的周转来影响染色体稳定性。

Proteasome nuclear activity affects chromosome stability by controlling the turnover of Mms22, a protein important for DNA repair.

机构信息

Michael Smith Laboratories, University of British Columbia, Vancouver, Canada.

出版信息

PLoS Genet. 2010 Feb 19;6(2):e1000852. doi: 10.1371/journal.pgen.1000852.

Abstract

To expand the known spectrum of genes that maintain genome stability, we screened a recently released collection of temperature sensitive (Ts) yeast mutants for a chromosome instability (CIN) phenotype. Proteasome subunit genes represented a major functional group, and subsequent analysis demonstrated an evolutionarily conserved role in CIN. Analysis of individual proteasome core and lid subunit mutations showed that the CIN phenotype at semi-permissive temperature is associated with failure of subunit localization to the nucleus. The resultant proteasome dysfunction affects chromosome stability by impairing the kinetics of double strand break (DSB) repair. We show that the DNA repair protein Mms22 is required for DSB repair, and recruited to chromatin in a ubiquitin-dependent manner as a result of DNA damage. Moreover, subsequent proteasome-mediated degradation of Mms22 is necessary and sufficient for cell cycle progression through the G(2)/M arrest induced by DNA damage. Our results demonstrate for the first time that a double strand break repair protein is a proteasome target, and thus link nuclear proteasomal activity and DSB repair.

摘要

为了扩大维持基因组稳定性的基因的已知范围,我们筛选了最近发布的一批温度敏感(Ts)酵母突变体,以寻找染色体不稳定性(CIN)表型。蛋白酶体亚基基因代表了一个主要的功能群,随后的分析表明它们在 CIN 中具有进化保守的作用。对单个蛋白酶体核心和盖亚基突变的分析表明,半许可温度下的 CIN 表型与亚基定位到核内的失败有关。由此产生的蛋白酶体功能障碍通过损害双链断裂(DSB)修复的动力学来影响染色体稳定性。我们表明,DNA 修复蛋白 Mms22 是 DSB 修复所必需的,并且由于 DNA 损伤,以泛素依赖性方式被募集到染色质上。此外,随后的蛋白酶体介导的 Mms22 降解对于通过 DNA 损伤诱导的 G(2)/M 阻滞的细胞周期进程是必要且充分的。我们的结果首次证明双链断裂修复蛋白是蛋白酶体的靶标,从而将核蛋白酶体活性与 DSB 修复联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35fc/2824753/44e4980a79d5/pgen.1000852.g001.jpg

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