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Mechanisms of minor pole–mediated spindle bipolarization in human oocytes

  • Tianyu Wu
  • , Yuxi Luo
  • , Meiling Zhang
  • , Biaobang Chen
  • , Xingzhu Du
  • , Hao Gu
  • , Siyuan Xie
  • , Zhiqi Pan
  • , Ran Yu
  • , Ruiqi Hai
  • , Xiangli Niu
  • , Guimin Hao
  • , Liping Jin
  • , Juanzi Shi
  • , Xiaoxi Sun
  • , Yanping Kuang
  • , Wen Li
  • , Qing Sang
  • , Lei Wang
  • Children's Hospital of Fudan University
  • Shanghai Jiao Tong University
  • Fudan University
  • Reproductive Hospital of Guangxi Zhuang Autonomous Region
  • Hebei Medical University

科研成果: 期刊稿件文章同行评审

27 引用 (Scopus)

摘要

Spindle bipolarization, the process of a microtubule mass transforming into a bipolar spindle, is a prerequisite for accurate chromosome segregation. In contrast to mitotic cells, the process and mechanism of spindle bipolarization in human oocytes remains unclear. Using high-resolution imaging in more than 1800 human oocytes, we revealed a typical state of multipolar intermediates that form during spindle bipolarization and elucidated the mechanism underlying this process. We found that the minor poles formed in multiple kinetochore clusters contribute to the generation of multipolar intermediates. We further determined the essential roles of HAUS6, KIF11, and KIF18A in spindle bipolarization and identified mutations in these genes in infertile patients characterized by oocyte or embryo defects. These results provide insights into the physiological and pathological mechanisms of spindle bipolarization in human oocytes.

源语言英语
文章编号eado1022
期刊Science
385
6711
DOI
出版状态已出版 - 23 8月 2024

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