细胞生物学
动细胞
卵母细胞
中心体
主轴装置
微管
生物
主轴杆体
减数分裂
染色体分离
微管组织中心
微管形核
多极纺锤
细胞分裂
遗传学
染色体
胚胎
细胞周期
基因
细胞
作者
Tianyu Wu,Jie Dong,Jing Fu,Yanping Kuang,Biaobang Chen,Hao Gu,Yuxi Luo,Ruihuan Gu,Meiling Zhang,Wen Li,Xi Dong,Xiaoxi Sun,Qing Sang,Lei Wang
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-11-17
卷期号:378 (6621)
被引量:34
标识
DOI:10.1126/science.abq7361
摘要
Meiotic spindle assembly ensures proper chromosome segregation in oocytes. However, the mechanisms behind spindle assembly in human oocytes remain largely unknown. We used three-dimensional high-resolution imaging of more than 2000 human oocytes to identify a structure that we named the human oocyte microtubule organizing center (huoMTOC). The proteins TACC3, CCP110, CKAP5, and DISC1 were found to be essential components of the huoMTOC. The huoMTOC arises beneath the oocyte cortex and migrates adjacent to the nuclear envelope before nuclear envelope breakdown (NEBD). After NEBD, the huoMTOC fragments and relocates on the kinetochores to initiate microtubule nucleation and spindle assembly. Disrupting the huoMTOC led to spindle assembly defects and oocyte maturation arrest. These results reveal a physiological mechanism of huoMTOC-regulated spindle assembly in human oocytes.
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