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DNA 损伤响应中的 Smc 复合物。

The Smc complexes in DNA damage response.

机构信息

Department of Pharmacology, Howard Hughes Medical Institute, 6001 Forest Park Road, Dallas, TX 75390, USA.

出版信息

Cell Biosci. 2012 Feb 27;2:5. doi: 10.1186/2045-3701-2-5.

Abstract

The structural maintenance of chromosomes (Smc) proteins regulate nearly all aspects of chromosome biology and are critical for genomic stability. In eukaryotes, six Smc proteins form three heterodimers--Smc1/3, Smc2/4, and Smc5/6--which together with non-Smc proteins form cohesin, condensin, and the Smc5/6 complex, respectively. Cohesin is required for proper chromosome segregation. It establishes and maintains sister-chromatid cohesion until all sister chromatids achieve bipolar attachment to the mitotic spindle. Condensin mediates chromosome condensation during mitosis. The Smc5/6 complex has multiple roles in DNA repair. In addition to their major functions in chromosome cohesion and condensation, cohesin and condensin also participate in the cellular DNA damage response. Here we review recent progress on the functions of all three Smc complexes in DNA repair and their cell cycle regulation by posttranslational modifications, such as acetylation, phosphorylation, and sumoylation. An in-depth understanding of the mechanisms by which these complexes promote DNA repair and genomic stability may help us to uncover the molecular basis of genomic instability in human cancers and devise ways that exploit this instability to treat cancers.

摘要

染色体结构维持(Smc)蛋白调节染色体生物学的几乎所有方面,对于基因组稳定性至关重要。在真核生物中,六种 Smc 蛋白形成三个异源二聚体——Smc1/3、Smc2/4 和 Smc5/6——它们与非 Smc 蛋白一起分别形成黏合蛋白、凝缩蛋白和 Smc5/6 复合物。黏合蛋白对于正确的染色体分离是必需的。它建立并维持姐妹染色单体的黏合,直到所有姐妹染色单体都与有丝分裂纺锤体实现两极附着。凝缩蛋白在有丝分裂过程中介导染色体凝缩。Smc5/6 复合物在 DNA 修复中有多种作用。除了在染色体黏合和凝缩中的主要功能外,黏合蛋白和凝缩蛋白还参与细胞 DNA 损伤反应。在这里,我们综述了最近在 DNA 修复和它们的细胞周期调控方面的研究进展,这些调控是通过翻译后修饰,如乙酰化、磷酸化和 sumoylation 实现的。深入了解这些复合物促进 DNA 修复和基因组稳定性的机制,可能有助于我们揭示人类癌症中基因组不稳定性的分子基础,并设计利用这种不稳定性来治疗癌症的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bd6/3329402/de2ce406d29f/2045-3701-2-5-1.jpg

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