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Coordinated requirements of human Topo II and cohesin for metaphase centromere alignment under Mad2-dependent spindle checkpoint surveillance

机译:在依赖Mad2的纺锤体检查点监视下,人类Topo II和粘着蛋白对中期着丝粒对齐的协调要求

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Cohesin maintains sister chromatid cohesion until its Rad21/Scc1/Mcd1 is cleaved by separase during anaphase. DNA topoisomerase II (topo II) maintains the proper topology of chromatid DNAs and is essential for chromosome segregation. Here we report direct observations of mitotic progression in individual HeLa cells after functional disruptions of hRad21, NIPBL, a loading factor for hRad21, and topo II alpha,beta by RNAi and a topo II inhibitor, ICRF-193. Mitosis is delayed in a Mad2-dependent manner after disruption of either or both cohesin and topo II. In hRad21 depletion, interphase pericentric architecture becomes aberrant, and anaphase is virtually permanently delayed as preseparated chromosomes are misaligned on the metaphase spindle. Topo II disruption perturbs centromere organization leading to intense Bub1, but no Mad2, on kinetochores and sustains a Mad2-dependent delay in anaphase onset with persisting securin. Thus topo II impinges upon centromere/kinetochore function. Disruption of topo II by RNAi or ICRF-193 overrides the mitotic delay induced by cohesin depletion: sister centromeres are aligned and anaphase spindle movements occur. The ensuing accumulation of catenations in preseparated sister chromatids may overcome the reduced tension arising from cohesin depletion, causing the override. Cohesin and topo II have distinct, yet coordinated functions in metaphase alignment.
机译:粘着蛋白维持姐妹染色单体的粘着力,直到其Rad21 / Scc1 / Mcd1在后期被分离酶裂解。 DNA拓扑异构酶II(拓扑II)保持了染色单体DNA的正确拓扑结构,并且对于染色体分离至关重要。在这里,我们报告了通过RNAi和topo II抑制剂ICRF-193对hRad21,NIPBL,hRad21的负载因子和topo IIα,β功能破坏后单个HeLa细胞的有丝分裂进程的直接观察。在破坏粘附素和topo II或两者后,以Mad2依赖性方式延迟有丝分裂。在hRad21耗竭中,由于预分离的染色体在中期梭形轴上未对齐,相间的外周中心结构变得异常,并且后期实际上被永久延迟。 Topo II破坏扰动着丝粒组织,导致动植物上出现强烈的Bub1,但没有Mad2,并在持续的姜黄素维持后期的Mad2依赖性延迟。因此,topo II会影响着丝粒/线粒体功能。 RNAi或ICRF-193对topo II的破坏作用超过了粘附素耗竭引起的有丝分裂延迟:姐妹着丝粒对齐并且发生后期纺锤体运动。在分离的姐妹染色单体中随后的链状积累可以克服由于粘着蛋白消耗而引起的张力降低,从而导致超控。粘着蛋白和topo II在中期对齐中具有独特但协调的功能。

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