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Nse1 Nse2 and a Novel Subunit of the Smc5-Smc6 Complex Nse3 Play a Crucial Role in Meiosis

机译:Nse1Nse2和Smc5-Smc6复合体的一个新亚基Nse3在减数分裂中起关键作用

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摘要

The structural maintenance of chromosomes (SMC) family of proteins play key roles in the organization, packaging, and repair of chromosomes. Cohesin (Smc1+3) holds replicated sister chromatids together until mitosis, condensin (Smc2+4) acts in chromosome condensation, and Smc5+6 performs currently enigmatic roles in DNA repair and chromatin structure. The SMC heterodimers must associate with non-SMC subunits to perform their functions. Using both biochemical and genetic methods, we have isolated a novel subunit of the Smc5+6 complex, Nse3. Nse3 is an essential nuclear protein that is required for normal mitotic chromosome segregation and cellular resistance to a number of genotoxic agents. Epistasis with Rhp51 (Rad51) suggests that like Smc5+6, Nse3 functions in the homologous recombination based repair of DNA damage. We previously identified two non-SMC subunits of Smc5+6 called Nse1 and Nse2. Analysis of nse1-1, nse2-1, and nse3-1 mutants demonstrates that they are crucial for meiosis. The Nse1 mutant displays meiotic DNA segregation and homologous recombination defects. Spore viability is reduced by nse2-1 and nse3-1, without affecting interhomolog recombination. Finally, genetic interactions shared by the nse mutants suggest that the Smc5+6 complex is important for replication fork stability.
机译:蛋白质的染色体(SMC)家族的结构维护在染色体的组织,包装和修复中起关键作用。粘着蛋白(Smc1 + 3)将复制的姐妹染色单体保持在一起,直到有丝分裂,凝缩蛋白(Smc2 + 4)参与染色体浓缩,而Smc5 + 6目前在DNA修复和染色质结构中起着神秘作用。 SMC异二聚体必须与非SMC亚基缔合才能执行其功能。使用生化和遗传方法,我们已经分离出Smc5 + 6复合物Nse3的一个新亚基。 Nse3是必需的核蛋白,是正常有丝分裂染色体分离和细胞对多种遗传毒性剂的抗性所必需的。 Rhp51(Rad51)的上位性提示Nse3与Smc5 + 6类似,在基于同源重组的DNA损伤修复中起作用。我们之前确定了Smc5 + 6的两个非SMC亚基,分别称为Nse1和Nse2。对nse1-1,nse2-1和nse3-1突变体的分析表明,它们对于减数分裂至关重要。 Nse1突变体显示减数分裂DNA分离和同源重组缺陷。 nse2-1和nse3-1降低了孢子活力,而不会影响同源重组。最后,nse突变体共有的遗传相互作用表明Smc5 + 6复合物对于复制叉的稳定性很重要。

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