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驱动蛋白-7 CENP-E介导中心体组织和纺锤体组装,以调节染色体排列和基因组稳定性。

Kinesin-7 CENP-E mediates centrosome organization and spindle assembly to regulate chromosome alignment and genome stability.

作者信息

Chen Jie, Wu Shan, He Jie-Jie, Liu Yu-Peng, Deng Zhao-Yang, Fang Han-Kai, Chen Jian-Fan, Wei Ya-Lan, She Zhen-Yu

机构信息

Department of Cell Biology and Genetics, The School of Basic Medical Sciences, Fujian Medical University, Fuzhou, Fujian, China.

Key Laboratory of Stem Cell Engineering and Regenerative Medicine, Fujian Province University, Fuzhou, Fujian, China.

出版信息

Cell Prolif. 2025 Jan;58(1):e13745. doi: 10.1111/cpr.13745. Epub 2024 Sep 12.

Abstract

Chromosome congression and alignment are essential for cell cycle progression and genomic stability. Kinesin-7 CENP-E, a plus-end-directed kinesin motor, is required for chromosome biorientation, congression and alignment in cell division. However, it remains unclear how chromosomes are aligned and segregated in the absence of CENP-E in mitosis. In this study, we utilize the CRISPR-Cas9 gene editing method and high-throughput screening to establish CENP-E knockout cell lines and reveal that CENP-E deletion results in defects in chromosome congression, alignment and segregation, which further promotes aneuploidy and genomic instability in mitosis. Both CENP-E inhibition and deletion lead to the dispersion of spindle poles, the formation of the multipolar spindle and spindle disorganization, which indicates that CENP-E is necessary for the organization and maintenance of spindle poles. In addition, CENP-E heterozygous deletion in spleen tissues also leads to the accumulation of dividing lymphocytes and cell cycle arrest in vivo. Furthermore, CENP-E deletion also disrupts the localization of key kinetochore proteins and triggers the activation of the spindle assembly checkpoint. In summary, our findings demonstrate that CENP-E promotes kinetochore-microtubule attachment and spindle pole organization to regulate chromosome alignment and spindle assembly checkpoint during cell division.

摘要

染色体的汇聚和排列对于细胞周期进程和基因组稳定性至关重要。驱动蛋白-7 CENP-E是一种向微管正端移动的驱动蛋白,在细胞分裂过程中,对于染色体双定向、汇聚和排列是必需的。然而,在有丝分裂过程中,缺乏CENP-E时染色体如何排列和分离仍不清楚。在本研究中,我们利用CRISPR-Cas9基因编辑方法和高通量筛选建立了CENP-E基因敲除细胞系,并揭示CENP-E缺失导致染色体汇聚、排列和分离缺陷,进而在有丝分裂中促进非整倍体和基因组不稳定性。CENP-E抑制和缺失均导致纺锤极分散、多极纺锤体形成和纺锤体紊乱,这表明CENP-E对于纺锤极的组织和维持是必需的。此外,脾脏组织中CENP-E杂合缺失也导致体内分裂淋巴细胞的积累和细胞周期停滞。此外,CENP-E缺失还破坏了关键动粒蛋白的定位并触发纺锤体组装检查点的激活。总之,我们的研究结果表明,CENP-E促进动粒-微管附着和纺锤极组织,以在细胞分裂过程中调节染色体排列和纺锤体组装检查点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cdc/11693568/4928859de9e1/CPR-58-e13745-g001.jpg

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