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Esco1 Acetylates Cohesin via a Mechanism Different from That of Esco2

机译:Esco1通过不同于Esco2的机理乙酰化粘着蛋白

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Sister chromatid cohesion is mediated by cohesin and is essential for accurate chromosome segregation. The cohesin subunits SMC1, SMC3, and Rad21 form a tripartite ring within which sister chromatids are thought to be entrapped. This event requires the acetylation of SMC3 and the association of sororin with cohesin by the acetyltransferases Esco1 and Esco2 in humans, but the functional mechanisms of these acetyltransferases remain elusive. Here, we showed that Esco1 requires Pds5, a cohesin regulatory subunit bound to Rad21, to form cohesion via SMC3 acetylation and the stabilization of the chromatin association of sororin, whereas Esco2 function was not affected by Pds5 depletion. Consistent with the functional link between Esco1 and Pds5, Pds5 interacted exclusively with Esco1, and this interaction was dependent on a unique and conserved Esco1 domain. Crucially, this interaction was essential for SMC3 acetylation and sister chromatid cohesion. Esco1 localized to cohesin localization sites on chromosomes throughout interphase in a manner that required the Esco1-Pds5 interaction, and it could acetylate SMC3 before and after DNA replication. These results indicate that Esco1 acetylates SMC3 via a mechanism different from that of Esco2. We propose that, by interacting with a unique domain of Esco1, Pds5 recruits Esco1 to chromatin-bound cohesin complexes to form cohesion. Furthermore, Esco1 acetylates SMC3 independently of DNA replication.
机译:姐妹染色单体凝聚力是由凝聚素介导的,对于准确的染色体分离至关重要。粘着蛋白亚基SMC1,SMC3和Rad21形成一个三方环,认为其中夹有姊妹染色单体。此事件需要通过人类中的乙酰基转移酶Esco1和Esco2进行SMC3的乙酰化以及索罗林与黏蛋白的结合,但是这些乙酰基转移酶的功能机制仍然不清楚。在这里,我们显示Esco1需要Pds5(一种与Rad21结合的粘附蛋白调节亚基)通过SMC3乙酰化和索罗林染色质缔合的稳定形成内聚力,而Esco2的功能不受Pds5消耗的影响。与Esco1和Pds5之间的功能链接一致,Pds5仅与Esco1相互作用,并且这种相互作用取决于唯一且保守的Esco1域。至关重要的是,这种相互作用对于SMC3乙酰化和姐妹染色单体内聚至关重要。 Esco1以要求Esco1-Pds5相互作用的方式在整个相间定位于染色体上的粘着素定位位点,并且可以在DNA复制之前和之后乙酰化SMC3。这些结果表明,Esco1通过不同于Esco2的机理乙酰化SMC3。我们建议,通过与Esco1的唯一域进行交互,Pds5将Esco1募集到染色质结合的黏着蛋白复合物上,形成内聚力。此外,Esco1乙酰化SMC3独立于DNA复制。

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