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SMC5和SMC6基因是重复染色体区域分离所必需的。

SMC5 and SMC6 genes are required for the segregation of repetitive chromosome regions.

作者信息

Torres-Rosell Jordi, Machín Félix, Farmer Sarah, Jarmuz Adam, Eydmann Trevor, Dalgaard Jacob Z, Aragón Luis

机构信息

Cell Cycle Group, MRC Clinical Sciences Centre, Imperial College London, Du Cane Road, London W12 0NN, UK.

出版信息

Nat Cell Biol. 2005 Apr;7(4):412-9. doi: 10.1038/ncb1239. Epub 2005 Mar 27.

Abstract

Structure chromosome (SMC) proteins organize the core of cohesin, condensin and Smc5-Smc6 complexes. The Smc5-Smc6 complex is required for DNA repair, as well as having another essential but enigmatic function. Here, we generated conditional mutants of SMC5 and SMC6 in budding yeast, in which the essential function was affected. We show that mutant smc5-6 and smc6-9 cells undergo an aberrant mitosis in which chromosome segregation of repetitive regions is impaired; this leads to DNA damage and RAD9-dependent activation of the Rad53 protein kinase. Consistent with a requirement for the segregation of repetitive regions, Smc5 and Smc6 proteins are enriched at ribosomal DNA (rDNA) and at some telomeres. We show that, following Smc5-Smc6 inactivation, metaphase-arrested cells show increased levels of X-shaped DNA (Holliday junctions) at the rDNA locus. Furthermore, deletion of RAD52 partially suppresses the temperature sensitivity of smc5-6 and smc6-9 mutants. We also present evidence showing that the rDNA segregation defects of smc5/smc6 mutants are mechanistically different from those previously observed for condensin mutants. These results point towards a role for the Smc5-Smc6 complex in preventing the formation of sister chromatid junctions, thereby ensuring the correct partitioning of chromosomes during anaphase.

摘要

结构染色体(SMC)蛋白构成了黏连蛋白、凝聚素和Smc5 - Smc6复合物的核心。Smc5 - Smc6复合物对于DNA修复是必需的,并且还具有另一种重要但神秘的功能。在这里,我们在芽殖酵母中生成了SMC5和SMC6的条件性突变体,其中其重要功能受到影响。我们发现,突变体smc5 - 6和smc6 - 9细胞经历异常有丝分裂,其中重复区域的染色体分离受损;这导致DNA损伤以及Rad53蛋白激酶的RAD9依赖性激活。与重复区域分离的需求一致,Smc5和Smc6蛋白在核糖体DNA(rDNA)和一些端粒处富集。我们发现,在Smc5 - Smc6失活后,中期停滞的细胞在rDNA位点处显示出X形DNA(霍利迪连接体)水平增加。此外,RAD52的缺失部分抑制了smc5 - 6和smc6 - 9突变体的温度敏感性。我们还提供证据表明,smc5 / smc6突变体的rDNA分离缺陷在机制上与先前观察到的凝聚素突变体的缺陷不同。这些结果表明Smc5 - Smc6复合物在防止姐妹染色单体连接体形成中起作用,从而确保后期染色体的正确分配。

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