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CENP-O Class Proteins Form a Stable Complex and Are Required for Proper Kinetochore Function

机译:CENP-O类蛋白形成稳定的复合物并具有适当的动线粒功能

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摘要

We previously identified a multisubunit complex (CENP-H/I complex) in kinetochores from human and chicken cells. We showed that the CENP-H/I complex is divided into three functional classes. In the present study, we investigated CENP-O class proteins, which include CENP-O, -P, -Q, -R, and -50 (U). We created chicken DT40 cell knockouts of each of these proteins, and we found that all knockout lines were viable, but that they showed slow proliferation and mitotic defects. Kinetochore localization of CENP-O, -P, -Q, and -50 was interdependent, but kinetochore localization of these proteins was observed in CENP-R–deficient cells. A coexpression assay in bacteria showed that CENP-O, -P, -Q, and -50 proteins form a stable complex that can associate with CENP-R. Phenotype analysis of knockout cells showed that all proteins except for CENP-R were required for recovery from spindle damage, and phosphorylation of CENP-50 was essential for recovery from spindle damage. We also found that treatment with the proteasome inhibitor MG132 partially rescued the severe mitotic phenotype observed in response to release from nocodazole block in CENP-50–deficient cells. This suggests that CENP-O class proteins are involved in the prevention of premature sister chromatid separation during recovery from spindle damage.
机译:我们先前在人和鸡细胞的动植物中鉴定了一个多亚基复合物(CENP-H / I复合物)。我们表明,CENP-H / I复合物分为三个功能类别。在本研究中,我们研究了CENP-O类蛋白,包括CENP-O,-P,-Q,-R和-50(U)。我们创建了每种蛋白质在鸡DT40细胞中的敲除,我们发现所有敲除品系都是可行的,但它们显示出缓慢的增殖和有丝分裂缺陷。 CENP-O,-P,-Q和-50的线粒体定位是相互依赖的,但是在CENP-R缺失的细胞中却观察到了这些蛋白的线粒体定位。在细菌中的共表达测定表明,CENP-O,-P,-Q和-50蛋白形成可以与CENP-R缔合的稳定复合物。基因敲除细胞的表型分析表明,除CENP-R外的所有蛋白都是从纺锤体损伤中恢复所必需的,CENP-50的磷酸化对于从纺锤体损伤中恢复是必不可少的。我们还发现,蛋白酶体抑制剂MG132的治疗可部分缓解CENP-50缺陷细胞中诺考达唑阻滞释放后观察到的严重有丝分裂表型。这表明CENP-O类蛋白参与了纺锤体损伤恢复期间防止过早的姐妹染色单体分离。

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