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Mammalian SGO2 appears at the inner centromere domain and redistributes depending on tension across centromeres during meiosis II and mitosis

机译:哺乳动物SGO2出现在内部着丝粒域,并根据减数分裂II和有丝分裂期间着丝粒的张力重新分布

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摘要

Shugoshin (SGO) is a family of proteins that protect centromeric cohesin complexes from release during mitotic prophase and from degradation during meiosis I. Two mammalian SGO paralogues—SGO1 and SGO2—have been identified, but their distribution and function during mammalian meiosis have not been reported. Here, we analysed the expression of SGO2 during male mouse meiosis and mitosis. During meiosis I, SGO2 accumulates at centromeres during diplotene, and colocalizes differentially with the cohesin subunits RAD21 and REC8 at metaphase I centromeres. However, SGO2 and RAD21 change their relative distributions during telophase I when sister-kinetochore association is lost. During meiosis II, SGO2 shows a striking tension-dependent redistribution within centromeres throughout chromosome congression during prometaphase II, as it does during mitosis. We propose a model by which the redistribution of SGO2 would unmask cohesive centromere proteins, which would be then released or cleaved by separase, to trigger chromatid segregation to opposite poles.
机译:Shugoshin(SGO)是一种蛋白质家族,可保护着丝粒粘着蛋白复合物在有丝分裂前期释放和减数分裂I期间的降解。已经确定了两个哺乳动物SGO旁系同源物SGO1和SGO2,但是在哺乳动物减数分裂过程中它们的分布和功能尚未得到证实。报告。在这里,我们分析了雄性小鼠减数分裂和有丝分裂过程中SGO2的表达。在减数分裂I期间,SGO2在二倍戊烯期间在着丝粒上积累,并在中期I着丝粒上与黏着蛋白亚基RAD21和REC8差异化共定位。但是,在姐妹阶段,线粒体失去联系时,SGO2和RAD21在第一期改变了它们的相对分布。在减数分裂II期间,SGO2在前中期II期间和整个有丝分裂期间一样,在整个染色体大会的着丝粒中显示出惊人的张力依赖性重新分布。我们提出了一个模型,通过该模型,SGO2的重新分布将掩盖内聚着丝粒蛋白,然后通过分离酶释放或裂解内聚着丝粒蛋白,从而触发染色单体分离到相反的两极。

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