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首页> 外文期刊>Journal of Cell Science >The chromosome passenger complex is required for fidelity of chromosome transmission and cytokinesis in meiosis of mouse oocytes.
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The chromosome passenger complex is required for fidelity of chromosome transmission and cytokinesis in meiosis of mouse oocytes.

机译:染色体乘客复合体是小鼠卵母细胞减数分裂中染色体传递和胞质分裂保真度所必需的。

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摘要

The existence of two forms of the chromosome passenger complex (CPC) in the mammalian oocyte has meant that its role in female meiosis has remained unclear. Here we use loss- and gain-of function approaches to assess the meiotic functions of one of the shared components of these complexes, INCENP, and of the variable kinase subunits, Aurora B or Aurora C. We show that either the depletion of INCENP or the combined inhibition of Aurora kinases B and C activates the anaphase-promoting complex or cyclosome (APC/C) before chromosomes have properly congressed in meiosis I and also prevents cytokinesis and hence extrusion of the first polar body. Overexpression of Aurora C also advances APC/C activation and results in cytokinesis failure in a high proportion of oocytes, indicative of a dominant effect on CPC function. Together, this points to roles for the meiotic CPC in functions similar to the mitotic roles of the complex: correcting chromosome attachment to microtubules, facilitating the spindle-assembly checkpoint (SAC) function and enabling cytokinesis. Surprisingly, overexpression of Aurora B leads to a failure of APC/C activation, stabilization of securin and consequently a failure of chiasmate chromosomes to resolve - a dominant phenotype that is completely suppressed by depletion of INCENP. Taken together with the differential distribution of Aurora proteins B and C on chiasmate chromosomes, this points to differential functions of the two forms of CPC in regulating the separation of homologous chromosomes in meiosis I.
机译:哺乳动物卵母细胞中存在两种形式的染色体过客复合体(CPC),这表明其在女性减数分裂中的作用仍不清楚。在这里,我们使用丧失功能和获得功能的方法来评估这些复合物的共享成分之一INCENP和可变激酶亚基Aurora B或Aurora C的减数分裂功能。我们证明了INCENP的耗竭或在染色体已正确进入减数分裂I之前,对Aurora激酶B和C的联合抑制会激活后期促进复合物或环体(APC / C),并防止胞质分裂,从而阻止第一个极体的挤出。 Aurora C的过表达还促进了APC / C的活化,并导致高比例的卵母细胞发生胞质分裂失败,这表明对CPC功能起主要作用。总之,这表明减数分裂CPC在功能上类似于复合体的有丝分裂角色的作用:校正染色体与微管的附着,促进纺锤体装配检查点(SAC)功能以及实现胞质分裂。出人意料的是,Aurora B的过度表达导致APC / C激活失败,安全性增强,并导致chiasmate染色体无法解析-一种显性表型,该表型被INCENP耗尽完全抑制。结合Aurora蛋白B和C在chismate染色体上的差异分布,这表明两种形式的CPC在调节减数分裂I同源染色体分离中的差异作用。

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