Research Institute of Molecular Pathology, Vienna, Austria.
Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.
EMBO J. 2018 Aug 1;37(15). doi: 10.15252/embj.201797150. Epub 2018 Jun 21.
Chromosome segregation depends on sister chromatid cohesion which is established by cohesin during DNA replication. Cohesive cohesin complexes become acetylated to prevent their precocious release by WAPL before cells have reached mitosis. To obtain insight into how DNA replication, cohesion establishment and cohesin acetylation are coordinated, we analysed the interaction partners of 55 human proteins implicated in these processes by mass spectrometry. This proteomic screen revealed that on chromatin the cohesin acetyltransferase ESCO2 associates with the MCM2-7 subcomplex of the replicative Cdc45-MCM-GINS helicase. The analysis of ESCO2 mutants defective in MCM binding indicates that these interactions are required for proper recruitment of ESCO2 to chromatin, cohesin acetylation during DNA replication, and centromeric cohesion. We propose that MCM binding enables ESCO2 to travel with replisomes to acetylate cohesive cohesin complexes in the vicinity of replication forks so that these complexes can be protected from precocious release by WAPL Our results also indicate that ESCO1 and ESCO2 have distinct functions in maintaining cohesion between chromosome arms and centromeres, respectively.
染色体分离依赖于姐妹染色单体的黏合,这是在 DNA 复制过程中由黏合蛋白(cohesin)建立的。在细胞进入有丝分裂之前,黏合的黏合蛋白复合物会被 WAPL 提前释放,因此会被乙酰化。为了深入了解 DNA 复制、黏合建立和黏合蛋白乙酰化是如何协调的,我们通过质谱法分析了 55 种人类蛋白的相互作用伙伴,这些蛋白涉及这些过程。这项蛋白质组学筛选揭示了在染色质上,黏合蛋白乙酰转移酶 ESCO2 与复制性 Cdc45-MCM-GINS 解旋酶的 MCM2-7 亚基复合物相关联。对 ESCO2 突变体的分析表明,这些突变体与 MCM 结合缺陷,这些相互作用对于 ESCO2 正确地募集到染色质、DNA 复制过程中的黏合蛋白乙酰化以及着丝粒黏合是必需的。我们提出,MCM 结合使 ESCO2 能够与复制体一起移动,乙酰化复制叉附近的黏合黏合蛋白复合物,从而保护这些复合物免受 WAPL 的提前释放。我们的结果还表明,ESCO1 和 ESCO2 分别在维持染色体臂和着丝粒之间的黏合方面具有不同的功能。