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CENP-T proteins are conserved centromere receptors of the Ndc80 complex

机译:CENP-T蛋白是Ndc80复合体的保守着丝粒受体

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Centromeres direct the assembly of kinetochores, microtubule-attachment sites that allow chromosome segregation on the mitotic spindle. Fundamental differences in size and organization between evolutionarily distant eukaryotic centromeres have in many cases obscured general principles of their function. Here we demonstrate that centromere-binding proteins are highly conserved between budding yeast and humans. We identify the histone-fold protein Cnn1 CENP-T as a direct centromere receptor of the microtubule-binding Ndc80 complex. The amino terminus of Cnn1 contains a conserved peptide motif that mediates stoichiometric binding to the Spc24-25 domain of the Ndc80 complex. Consistent with the critical role of this interaction, artificial tethering of the Ndc80 complex through Cnn1 allows mini-chromosomes to segregate in the absence of a natural centromere. Our results reveal the molecular function of CENP-T proteins and demonstrate how the Ndc80 complex is anchored to centromeres in a manner that couples chromosome movement to spindle dynamics.
机译:着丝粒指导着动粒的组装,微管附着位点允许染色体在有丝分裂纺锤体上分离。进化距离较远的真核着丝粒之间大小和组织的根本差异在许多情况下掩盖了其功能的一般原理。在这里,我们证明了着丝粒结合蛋白在发芽的酵母和人类之间是高度保守的。我们确定组蛋白折叠蛋白Cnn1 CENP-T为微管结合Ndc80复合体的直接着丝粒受体。 Cnn1的氨基末端包含一个保守的肽基序,该基序介导与Ndc80复合物的Spc24-25域化学计量结合。与这种相互作用的关键作用一致,通过Cnn1对Ndc80复合物进行人工束缚可以使微型染色体在没有天然着丝粒的情况下分离。我们的结果揭示了CENP-T蛋白的分子功能,并证明了Ndc80复合物如何以将染色体运动与纺锤体动力学耦合的方式锚定于着丝粒。

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