首页> 外文期刊>Chromosoma >CENP-F is a novel microtubule-binding protein that is essential for kinetochore attachments and affects the duration of the mitotic checkpoint delay
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CENP-F is a novel microtubule-binding protein that is essential for kinetochore attachments and affects the duration of the mitotic checkpoint delay

机译:CENP-F是一种新型的微管结合蛋白,对于动线粒体附着至关重要,并影响有丝分裂检查点延迟的持续时间

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摘要

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.
机译:着丝粒蛋白F(CENP-F)是一种367 kDa的人类动粒蛋白,十年前就被鉴定出,但其功能只是最近才被使用小干扰RNA消耗细胞中蛋白质的研究揭示。所有研究表明,CENP-F对于染色体比对很重要,但是这些研究在CENP-F是否对有丝分裂检查点重要方面存在差异。我们在这里报告,CENP-F对于细胞维持长期的有丝分裂延迟,以响应未附着的动植物,是必不可少的。耗尽CENP-F的细胞在存在因用诺考达唑处理而导致的有缺陷的线粒体附着或线粒体蛋白质CENP-E和hSgo1耗尽的情况下退出有丝分裂。耗尽CENP-F的动植物显示有丝分裂检查点蛋白Mad1,Mad2,hBUBR1,hBUB1和hMps1的数量减少。我们假设CENP-F不是有丝分裂检查点的必要组成部分,但有助于有丝分裂延迟的持续时间。分别地,我们显示CENP-F是一种新颖的微管结合蛋白,在分子的相对端具有两个微管结合域。发现C-末端微管结合结构域在体外刺激微管聚合。这些活动为CENP-F如何在体内促进线粒体附着提供了生化解释。

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  • 来源
    《Chromosoma》 |2006年第4期|320-329|共10页
  • 作者

    J. Feng; H. Huang; T. J. Yen;

  • 作者单位

    Fox Chase Cancer Center 333 Cottman Avenue Philadelphia PA 19111 USA;

    Fox Chase Cancer Center 333 Cottman Avenue Philadelphia PA 19111 USA;

    Fox Chase Cancer Center 333 Cottman Avenue Philadelphia PA 19111 USA;

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  • 正文语种 eng
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