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通过姐妹染色单体粘连中的 MCM 复合物对 Eco1 进行功能控制。

Functional control of Eco1 through the MCM complex in sister chromatid cohesion.

机构信息

Laboratory of Genome Structure and Function, Institute for Quantitative Biosciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.

Laboratory of Genome Structure and Function, Institute for Quantitative Biosciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.

出版信息

Gene. 2021 Jun 5;784:145584. doi: 10.1016/j.gene.2021.145584. Epub 2021 Mar 20.

Abstract

Sister chromatid cohesion (SCC) is essential for the maintenance of genome integrity. The establishment of SCC is coupled to DNA replication, and this is achieved in budding yeast Saccharomyces cerevisiae by a mechanism that is dependent on the interaction between Eco1 acetyltransferase and PCNA in the DNA replication complex. In vertebrates, the Eco1 homolog ESCO2 has been reported to interact with MCM complex in the DNA replication complex to establish DNA replication-dependent cohesion. Here we show that budding yeast Eco1 is also physically interacted with the MCM complex. We found that Eco1 was specifically bound to Mcm2 subunit in the MCM complex and they interacted via their N-terminal regions, using yeast two-hybrid system. The underlying mechanism of the interaction was different between yeast and vertebrates. Intensive molecular dissection of Eco1 identified residues important for interaction with Mcm2 and/or PCNA. Mutant forms of Eco1 (Eco1 and Eco1), where sets of the identified residues were substituted with alanine, resulted in impaired SCC, decreased level of acetylation of Smc3, and a reduction of Eco1 protein amount in yeast cells. We, hence, suggest that Eco1 is stabilized by its interactions with MCM complex and PCNA, which allows it to promote DNA replication-coupled SCC establishment.

摘要

姐妹染色单体黏合(Sister chromatid cohesion,SCC)对于维持基因组完整性至关重要。SCC 的建立与 DNA 复制相关联,在 budding yeast Saccharomyces cerevisiae 中,这一机制依赖于 Eco1 乙酰转移酶与 DNA 复制复合物中的 PCNA 之间的相互作用来实现。在脊椎动物中,已经报道 Eco1 的同源物 ESCO2 与 DNA 复制复合物中的 MCM 复合物相互作用,以建立依赖于 DNA 复制的黏合。在这里,我们表明 budding yeast Eco1 也与 MCM 复合物在物理上相互作用。我们发现 Eco1 特异性地与 MCM 复合物中的 Mcm2 亚基结合,并且通过其 N 端区域相互作用,使用酵母双杂交系统。该相互作用的潜在机制在酵母和脊椎动物之间存在差异。对 Eco1 的深入分子剖析确定了与 Mcm2 和/或 PCNA 相互作用的重要残基。Eco1 的突变形式(Eco1 和 Eco1),其中一组确定的残基被替换为丙氨酸,导致 SCC 受损、Smc3 的乙酰化水平降低以及酵母细胞中 Eco1 蛋白量减少。因此,我们认为 Eco1 被其与 MCM 复合物和 PCNA 的相互作用稳定,从而促进了 DNA 复制偶联的 SCC 建立。

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