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Permitted and restricted steps of human kinetochore assembly in mitotic cell extracts

机译:在有丝分裂细胞提取物中的人类动力学组件的允许和限制步骤

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摘要

Mitotic kinetochores assemble via the hierarchical recruitment of numerous cytosolic components to the centromere region of each chromosome. However, how these orderly and localized interactions are achieved without spurious macromolecular assemblies forming from soluble kinetochore components in the cell cytosol remains poorly understood. We developed assembly assays to monitor the recruitment of green fluorescent protein–tagged recombinant proteins and native proteins from human cell extracts to inner kinetochore components immobilized on microbeads. In contrast to prior work in yeast and Xenopus egg extracts, we find that human mitotic cell extracts fail to support de novo assembly of microtubule-binding subcomplexes. A subset of interactions, such as those between CENP-A–containing nucleosomes and CENP-C, are permissive under these conditions. However, the subsequent phospho-dependent binding of the Mis12 complex is less efficient, whereas recruitment of the Ndc80 complex is blocked, leading to weak microtubule-binding activity of assembled particles. Using molecular variants of the Ndc80 complex, we show that auto-inhibition of native Ndc80 complex restricts its ability to bind to the CENP-T/W complex, whereas inhibition of the Ndc80 microtubule binding is driven by a different mechanism. Together, our work reveals regulatory mechanisms that guard against the spurious formation of cytosolic microtubule-binding kinetochore particles.
机译:有丝分裂的kinetochores通过分层募集许多细胞溶质组分与每种染色体的Centromere区域组装。然而,在没有从细胞胞质细胞溶解的可溶性运动中组分中形成有序和局部的相互作用而没有从溶于溶于溶血剂组分中仍然仍然理解。我们开发了组装测定,以监测从人细胞提取物中募集绿色荧光蛋白标记的重组蛋白和天然蛋白质,从而对固定在微珠上的内酮卷组分。与在酵母和外爪卵蛋提取物的事先工作相反,我们发现人体有丝分裂细胞提取物未能支持微管结合子码头的DE Novo组装。在这些条件下,含CENP-A的含核原子和CENP-C之间的相互作用的副本是允许的。然而,MIS12复合物的随后的磷酸依赖性结合效率较低,而NDC80络合物的募集被阻断,导致组装颗粒的微管结合活性较弱。使用NDC80复合物的分子变体,我们表明天然NDC80复合物的自动抑制限制了其与CENP-T / W复合物结合的能力,而NDC80微管结合的抑制由不同的机制驱动。我们的工作在一起,揭示了监管机制,防范细胞源微管结合的动力学颗粒的杂散形成。

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