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着丝粒蛋白F是一种新型微管结合蛋白,对动粒附着至关重要,并影响有丝分裂检查点延迟的持续时间。

CENP-F is a novel microtubule-binding protein that is essential for kinetochore attachments and affects the duration of the mitotic checkpoint delay.

作者信息

Feng J, Huang H, Yen T J

机构信息

Fox Chase Cancer Center, 333 Cottman Avenue, Philadelphia, PA 19111, USA.

出版信息

Chromosoma. 2006 Aug;115(4):320-9. doi: 10.1007/s00412-006-0049-5. Epub 2006 Apr 7.

Abstract

Centromeric protein F (CENP-F) is a 367-kDa human kinetochore protein that was identified a decade ago, but its function was only recently revealed by studies that used small interfering RNA to deplete the protein from cells. All studies showed that CENP-F is important for chromosome alignment, but these studies differed as to whether CENP-F is important to the mitotic checkpoint. We report here that CENP-F is essential for cells to sustain a prolonged mitotic delay in response to unattached kinetochores. Cells depleted of CENP-F exit mitosis in the presence of defective kinetochore attachments resulting from treatment with nocodazole, or the depletion of kinetochore proteins CENP-E and hSgo1. Kinetochores depleted of CENP-F exhibited a reduction in the amounts of the mitotic checkpoint proteins Mad1, Mad2, hBUBR1, hBUB1, and hMps1. We postulate that CENP-F is not an essential component of the mitotic checkpoint but facilitates the duration of the mitotic delay. Separately, we show that CENP-F is a novel microtubule-binding protein that possesses two microtubule-binding domains at opposite ends of the molecule. The C-terminal microtubule-binding domain was found to stimulate microtubule polymerization in vitro. These activities provide a biochemical explanation for how CENP-F contributes to kinetochore attachments in vivo.

摘要

着丝粒蛋白F(CENP-F)是一种367 kDa的人类动粒蛋白,十年前被发现,但其功能直到最近才通过使用小干扰RNA从细胞中去除该蛋白的研究得以揭示。所有研究均表明CENP-F对染色体排列很重要,但这些研究对于CENP-F对有丝分裂检查点是否重要存在分歧。我们在此报告,CENP-F对于细胞在应对未附着的动粒时维持延长的有丝分裂延迟至关重要。在用诺考达唑处理或动粒蛋白CENP-E和hSgo1缺失导致动粒附着缺陷的情况下,缺失CENP-F的细胞会退出有丝分裂。缺失CENP-F的动粒表现出有丝分裂检查点蛋白Mad1、Mad2、hBUBR1、hBUB1和hMps1的量减少。我们推测CENP-F不是有丝分裂检查点的必需成分,但有助于延长有丝分裂延迟的持续时间。另外,我们表明CENP-F是一种新型微管结合蛋白,在分子的相对两端具有两个微管结合结构域。发现C端微管结合结构域在体外刺激微管聚合。这些活性为CENP-F如何在体内促进动粒附着提供了生化解释。

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