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Yeast Cohesin complex requires a conserved protein, Eco1p(Ctf7), to establish cohesion between sister chromatids during DNA replication

机译:酵母黏附素复合物需要保守的蛋白质Eco1p(Ctf7),以在DNA复制过程中建立姐妹染色单体之间的黏附

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摘要

Sister chromatid cohesion is crucial for chromosome segregation during mitosis. Loss of cohesion very possibly triggers sister separation at the metaphase → anaphase transition. This process depends on the destruction of anaphase inhibitory proteins like Pds1p (Cut2p), which is thought to liberate a sister-separating protein Esp1p (Cut1p). By looking for mutants that separate sister centromeres in the presence of Pds1p, this and a previous study have identified six proteins essential for establishing or maintaining sister chromatid cohesion. Four of these proteins, Scc1p, Scc3p, Smc1p, and Smc3p, are subunits of a ‘Cohesin’ complex that binds chromosomes from late G1 until the onset of anaphase. The fifth protein, Scc2p, is not a stoichiometric Cohesin subunit but it is required for Cohesin’s association with chromosomes. The sixth protein, Eco1p(Ctf7p), is not a Cohesin subunit. It is necessary for the establishment of cohesion during DNA replication but not for its maintenance during G2 and M phases.
机译:姐妹染色单体凝聚对于有丝分裂期间染色体分离至关重要。内聚力的丧失很可能在中期→后期过渡中引发姐妹分离。这个过程取决于后期抑制蛋白如Pds1p(Cut2p)的破坏,据认为该蛋白可释放出姐妹分离蛋白Esp1p(Cut1p)。通过寻找在Pds1p存在下分离姐妹着丝粒的突变体,本研究和先前的研究已经鉴定出六种蛋白质,这些蛋白质对于建立或维持姐妹染色单体的内聚力至关重要。其中的四个蛋白Scc1p,Scc3p,Smc1p和Smc3p是“ Cohesin”复合物的亚基,该复合物结合了从G1晚期到后期开始的染色体。第五种蛋白Scc2p不是化学计量的Cohesin亚基,但是Cohesin与染色体结合所必需的。第六种蛋白Eco1p(Ctf7p)不是粘着素亚基。在DNA复制过程中建立凝聚力是必需的,但在G2和M阶段则不需要维持凝聚力。

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