首页> 外文期刊>Nucleic Acids Research >Cohesin acetyltransferase Esco2 regulates SAC and kinetochore functions via maintaining H4K16 acetylation during mouse oocyte meiosis
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Cohesin acetyltransferase Esco2 regulates SAC and kinetochore functions via maintaining H4K16 acetylation during mouse oocyte meiosis

机译:Cohesin乙酰转移酶ESCO2通过在小鼠卵母细胞减数分裂期间维持H4K16乙酰化来调节囊和动力学功能

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摘要

Sister chromatid cohesion, mediated by cohesin complex and established by the acetyltransferases Esco1 and Esco2, is essential for faithful chromosome segregation. Mutations in Esco2 cause Roberts syndrome, a developmental disease characterized by severe prenatal retardation as well as limb and facial abnormalities. However, its exact roles during oocyte meiosis have not clearly defined. Here, we report that Esco2 localizes to the chromosomes during oocyte meiotic maturation. Depletion of Esco2 by morpholino microinjection leads to the precocious polar body extrusion, the escape of metaphase I arrest induced by nocodazole treatment and the loss of BubR1 from kinetochores, indicative of inactivated SAC. Furthermore, depletion of Esco2 causes a severely impaired spindle assembly and chromosome alignment, accompanied by the remarkably elevated incidence of defective kinetochore-microtubule attachments which consequently lead to the generation of aneuploid eggs. Notably, we find that the involvement of Esco2 in SAC and kinetochore functions is mediated by its binding to histone H4 and acetylation of H4K16 both in vivo and in vitro. Thus, our data assign a novel meiotic function to Esco2 beyond its role in the cohesion establishment during mouse oocyte meiosis.
机译:被休肽复合物介导并由乙酰转移酶ESCO1和ESCO2建立的姐妹染色体内聚力对于忠实的染色体隔离是必不可少的。 Esco2中的突变导致罗伯茨综合征,一种发育疾病,其特征是严重产前延迟以及肢体和面部异常。然而,卵母细胞减数分裂期间的确切作用尚未明确定义。在这里,我们报告ESCO2在卵母细胞生成期间定位于染色体。通过吗啉微注射耗尽eSCO2导致先兆子体挤出,通过Nocodazole治疗诱导的中期阻滞和来自Kinetochores的Bubr1的丧失,指示灭活囊的逃逸。此外,ESCO2的耗尽导致主轴组件和染色体对准引起严重受损的脊柱组件和染色体对准,伴随着缺陷的动力学 - 微管附着的显着升高的发生率,从而导致产生空腹卵的产生。值得注意的是,我们发现ESCO2在囊和运动芯片功能中的参与是通过其与组蛋白H4的结合和体内和体外中的H4K16的乙酰化介导。因此,我们的数据将新的减数分裂功能分配给ESCO2,超出了小鼠卵母细胞减数分裂期间在凝聚力建立中的作用。

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