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Trypanosome outer kinetochore proteins suggest conservation of chromosome segregation machinery across eukaryotes

机译:锥虫外动核蛋白表明真核生物中染色体分离机制的保守性

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摘要

Kinetochores are multiprotein complexes that couple eukaryotic chromosomes to the mitotic spindle to ensure proper segregation. The model for kinetochore assembly is conserved between humans and yeast, and homologues of several components are widely distributed in eukaryotes, but key components are absent in some lineages. The recent discovery in a lineage of protozoa called kinetoplastids of unconventional kinetochores with no apparent homology to model organisms suggests that more than one system for eukaryotic chromosome segregation may exist. In this study, we report a new family of proteins distantly related to outer kinetochore proteins Ndc80 and Nuf2. The family member in kinetoplastids, KKT-interacting protein 1 (KKIP1), associates with the kinetochore, and its depletion causes severe defects in karyokinesis, loss of individual chromosomes, and gross defects in spindle assembly or stability. Immunopurification of KKIP1 from stabilized kinetochores identifies six further components, which form part of a trypanosome outer kinetochore complex. These findings suggest that kinetochores in organisms such as kinetoplastids are built from a divergent, but not ancestrally distinct, set of components and that Ndc80/Nuf2-like proteins are universal in eukaryotic division.
机译:动植物是将真核染色体与有丝分裂纺锤体耦合以确保正确分离的多蛋白复合物。线粒体组装模型在人和酵母之间是保守的,真核生物中广泛分布了几种成分的同源物,但某些谱系中却缺少关键成分。与原模型动物没有明显同源性的非常规动物的动植物体的原生动物谱系中的最新发现表明,可能存在不止一种真核染色体分离系统。在这项研究中,我们报告了与外部动粒蛋白Ndc80和Nuf2远缘相关的新蛋白家族。动素体中的家族成员KKT相互作用蛋白1(KKIP1)与动核结合,其耗竭会导致核运动中的严重缺陷,单个染色体的丢失以及纺锤体装配或稳定性的严重缺陷。从稳定的动粒体中免疫纯化KKIP1可以鉴定出六个其他成分,这些成分构成了锥虫外动粒体的一部分。这些发现表明,诸如动质体之类的生物中的动植物是由不同但并非祖先不同的组分构建而成的,并且Ndc80 / Nuf2样蛋白在真核分裂中是普遍存在的。

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