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The outer plate in vertebrate kinetochores is a flexible network with multiple microtubule interactions

机译:脊椎动物动植物的外板是具有多个微管相互作用的柔性网络

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摘要

Intricate interactions between kinetochores and microtubules are essential for the proper distribution of chromosomes during mitosis. A crucial long-standing question is how vertebrate kinetochores generate chromosome motion while maintaining attachments to the dynamic plus ends of the multiple kinetochore MTs (kMTs) in a kinetochore fibre. Here, we demonstrate that individual kMTs in PtK1 cells are attached to the kinetochore outer plate by several fibres that either embed the microtubule plus-end tips in a radial mesh, or extend out from the outer plate to bind microtubule walls. The extended fibres also interact with the walls of nearby microtubules that are not part of the kinetochore fibre. These structural data, in combination with other recent reports, support a network model of kMT attachment wherein the fibrous network in the unbound outer plate, including the Hec1–Ndc80 complex, dissociates and rearranges to form kMT attachments.
机译:动粒和微管之间的复杂相互作用对于有丝分裂期间染色体的正确分布至关重要。一个长期存在的关键问题是脊椎动物的动植物如何产生染色体运动,同时又保持着动粒纤维中多个动粒MT(kMT)的动态末端的附着。在这里,我们证明了PtK1细胞中的单个kMTs是通过几根纤维连接到线粒体外板上的,这些纤维要么将微管正端嵌入径向网格中,要么从外板伸出以结合微管壁。延伸的纤维还与附近的微管壁相互作用,而微管壁不是动粒纤维的一部分。这些结构数据与其他最近的报道相结合,支持了kMT附件的网络模型,其中未结合的外板中的纤维网络(包括Hec1-Ndc80复合体)解离并重排以形成kMT附件。

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