Department of Genetics, University of Cambridge, Cambridge CB2 3EH, United Kingdom.
Genetics. 2011 Jan;187(1):131-40. doi: 10.1534/genetics.110.119628. Epub 2010 Oct 26.
The kinetochore is a dynamic multiprotein complex assembled at the centromere in mitosis. Exactly how the structure of the kinetochore changes during mitosis and how its individual components contribute to chromosome segregation is largely unknown. Here we have focused on the contribution of the Mis12 complex to kinetochore assembly and function throughout mitosis in Drosophila. We show that despite the sequential kinetochore recruitment of Mis12 complex subunits Mis12 and Nsl1, the complex acts as a single functional unit. mis12 and nsl1 mutants show strikingly similar developmental and mitotic defects in which chromosomes are able to congress at metaphase, but their anaphase movement is strongly affected. While kinetochore association of Ndc80 absolutely depends on both Mis12 and Nsl1, BubR1 localization shows only partial dependency. In the presence of residual centromeric BubR1 the checkpoint still responds to microtubule depolymerization but is significantly weaker. These observations point to a complexity of the checkpoint response that may reflect subpopulations of BubR1 associated with residual kinetochore components, the core centromere, or elsewhere in the cell. Importantly our results indicate that core structural elements of the inner plate of the kinetochore have a greater contribution to faithful chromosome segregation in anaphase than in earlier stages of mitosis.
着丝粒是在有丝分裂时组装在着丝点的一个动态的多蛋白复合物。着丝点结构在有丝分裂过程中是如何变化的,以及其各个组件如何有助于染色体分离,在很大程度上仍然未知。在这里,我们专注于 Mis12 复合物在果蝇有丝分裂过程中对整个着丝点组装和功能的贡献。我们表明,尽管 Mis12 复合物的亚基 Mis12 和 Nsl1 是顺序募集到着丝点的,但该复合物作为一个单一的功能单元发挥作用。mis12 和 nsl1 突变体表现出惊人的相似的发育和有丝分裂缺陷,其中染色体能够在中期聚集,但它们的后期运动受到强烈影响。虽然 Ndc80 的着丝点关联绝对依赖于 Mis12 和 Nsl1,但 BubR1 的定位仅显示部分依赖性。在残留的着丝粒 BubR1 存在的情况下,检查点仍然对微管解聚有反应,但反应明显减弱。这些观察结果表明,检查点反应的复杂性可能反映了与残留的着丝点组件、核心着丝粒或细胞内其他部位相关联的 BubR1 的亚群。重要的是,我们的结果表明,着丝点内板的核心结构元件在后期向染色体分离的贡献大于在有丝分裂的早期阶段。