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人类着丝粒蛋白I将着丝粒蛋白F、MAD1和MAD2定位到动粒上,对有丝分裂至关重要。

Human CENP-I specifies localization of CENP-F, MAD1 and MAD2 to kinetochores and is essential for mitosis.

作者信息

Liu Song-Tao, Hittle James C, Jablonski Sandra A, Campbell Michael S, Yoda Kinya, Yen Tim J

机构信息

Fox Chase Cancer Center, 7701 Burholme Avenue, Philadelphia, Pennsylvania 19111, USA.

出版信息

Nat Cell Biol. 2003 Apr;5(4):341-5. doi: 10.1038/ncb953.

Abstract

The kinetochore, a macromolecular complex located at the centromere of chromosomes, provides essential functions for accurate chromosome segregation. Kinetochores contain checkpoint proteins that monitor attachments between the kinetochore and microtubules to ensure that cells do not exit mitosis in the presence of unaligned chromosomes. Here we report that human CENP-I, a constitutive protein of the kinetochore that shares limited similarity with Mis6 of Schizosaccharomyces pombe, is required for the localization of CENP-F and the checkpoint proteins MAD1 and MAD2 to kinetochores. Depletion of CENP-I from kinetochores causes the cell cycle to delay in G2. Although monopolar chromosomes in CENP-I-depleted cells fail to establish bipolar connections, the cells are unable to arrest in mitosis. These cells are transiently delayed in mitosis in a MAD2-dependent manner, even though their kinetochores are depleted of MAD2. The delay is extended considerably when the number of unattached kinetochores is increased. This suggests that no single unattached kinetochore in CENP-I-depleted cells can arrest mitosis. The collective output from many unattached kinetochores is required to reach a threshold signal of 'wait for anaphase' to sustain a prolonged mitotic arrest.

摘要

动粒是位于染色体着丝粒处的一种大分子复合体,为精确的染色体分离提供重要功能。动粒包含检查点蛋白,这些蛋白监测动粒与微管之间的附着情况,以确保细胞在存在未对齐染色体时不会退出有丝分裂。在此,我们报告人类CENP-I是动粒的一种组成蛋白,与粟酒裂殖酵母的Mis6有有限的相似性,它是CENP-F以及检查点蛋白MAD1和MAD2定位于动粒所必需的。从动粒中去除CENP-I会导致细胞周期在G2期延迟。尽管CENP-I缺失细胞中的单极染色体无法建立双极连接,但这些细胞无法在有丝分裂中停滞。这些细胞以依赖MAD2的方式在有丝分裂中短暂延迟,即使它们的动粒中没有MAD2。当未附着动粒的数量增加时,延迟会显著延长。这表明CENP-I缺失细胞中单个未附着的动粒都无法使有丝分裂停滞。需要许多未附着动粒的集体输出才能达到“等待后期”的阈值信号,以维持长时间的有丝分裂停滞。

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