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Kre28-Spc105 相互作用对于 Spc105 在动粒上的加载是必不可少的。

Kre28-Spc105 interaction is essential for Spc105 loading at the kinetochore.

机构信息

Cell and Developmental Biology, University of Michigan Medical School, Ann Arbor, MI, USA.

出版信息

Open Biol. 2022 Jan;12(1):210274. doi: 10.1098/rsob.210274. Epub 2022 Jan 19.

Abstract

Kinetochore (KTs) are macromolecular protein assemblies that attach sister chromatids to spindle microtubules (MTs) and mediate accurate chromosome segregation during mitosis. The outer KT consists of the KMN network, a protein super-complex comprising nl1 (yeast Spc105), is12 (yeast Mtw1), and dc80 (yeast Ndc80), which harbours sites for MT binding. Within the KMN network, Spc105 acts as an interaction hub of components involved in spindle assembly checkpoint (SAC) signalling. It is known that Spc105 forms a complex with KT component Kre28. However, where Kre28 physically localizes in the budding yeast KT is not clear. The exact function of Kre28 at the KT is also unknown. Here, we investigate how Spc105 and Kre28 interact and how they are organized within bioriented yeast KTs using genetics and cell biological experiments. Our microscopy data show that Spc105 and Kre28 localize at the KT with a 1 : 1 stoichiometry. We also show that the Kre28-Spc105 interaction is important for Spc105 protein turn-over and essential for their mutual recruitment at the KTs. We created several truncation mutants of kre28 that affect Spc105 loading at the KTs. When over-expressed, these mutants sustain the cell viability, but SAC signalling and KT biorientation are impaired. Therefore, we conclude that Kre28 contributes to chromosome biorientation and high-fidelity segregation at least indirectly by regulating Spc105 localization at the KTs.

摘要

着丝粒(KTs)是附着姐妹染色单体到纺锤体微管(MTs)并在有丝分裂期间介导染色体精确分离的大分子蛋白组装体。外着丝粒由 KMN 网络组成,该蛋白超复合物包含 nl1(酵母 Spc105)、is12(酵母 Mtw1)和 dc80(酵母 Ndc80),其包含 MT 结合位点。在 KMN 网络中,Spc105 作为参与纺锤体装配检查点(SAC)信号的组件的相互作用中心。已知 Spc105 与 KT 组件 Kre28 形成复合物。然而,在芽殖酵母 KT 中 Kre28 物理定位的位置尚不清楚。Kre28 在 KT 中的确切功能也不清楚。在这里,我们使用遗传学和细胞生物学实验研究 Spc105 和 Kre28 如何相互作用以及它们在定向酵母 KTs 中的组织方式。我们的显微镜数据表明,Spc105 和 Kre28 在 KT 上以 1:1 的化学计量定位。我们还表明,Kre28-Sp c105 相互作用对于 Spc105 蛋白周转很重要,并且对于它们在 KTs 上的相互募集至关重要。我们创建了几个影响 Kre28 在 KTs 上装载 Spc105 的截断突变体。当过度表达时,这些突变体维持细胞活力,但 SAC 信号和 KT 定向性受损。因此,我们得出结论,Kre28 通过调节 Spc105 在 KTs 上的定位,至少间接地有助于染色体定向和高保真分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af80/8767186/c3d474a06d87/rsob210274f01.jpg

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