生发泡
细胞生物学
动细胞
驱动蛋白
主轴检查点
动力蛋白
减数分裂
粘蛋白
生物
Polo样激酶
有丝分裂
减数分裂II
多极纺锤
染色体分离
细胞周期蛋白B1
微管
主轴装置
主轴杆体
卵母细胞
细胞周期蛋白依赖激酶1
细胞周期
遗传学
细胞分裂
染色体
细胞
胚胎
基因
作者
Meng‐Xiang Li,Kun‐Huan Zhang,Yuanjing Zou,Ping‐Shuang Lu,Shao‐Chen Sun,Yue Wang
标识
DOI:10.1096/fj.202501664r
摘要
ABSTRACT KIF16B is a member of the kinesin‐3 family of motor proteins, which facilitates processes such as vesicle transport, microtubule dynamics, and organelle function during mitosis. In this study, we explored the role of KIF16B in meiosis. Our findings indicate that KIF16B is involved in the meiotic G2–M transition and spindle assembly in oocytes. KIF16B was consistently expressed throughout the meiotic cell cycle of mouse oocytes. After the occurrence of germinal vesicle breakdown, KIF16B became concentrated on microtubules. The exhaustion of KIF16B induced the impairment of meiotic cell cycle progression, which was due to the inactivation of CDK1 and the reduction in the level of cyclin B1, consequently resulting in the failure of germinal vesicle breakdown. Furthermore, aberrant spindle phenotypes and disordered chromosome alignment were observed in KIF16B‐depleted oocytes, along with improper kinetochore–microtubule attachments. These abnormal K–MT attachments resulted in the persistent activation of BubR1/Bub3 at the kinetochores. Moreover, KIF16B knockdown destabilized α‐tubulin by affecting the activity of histone deacetylase 6 (HDAC6). Further analysis revealed that KIF16B participated in the Ran GTPase‐dependent activation of TPX2, which in turn regulated the phosphorylation levels of Aurora A–polo‐like kinase 1 (PLK1), driving the proper assembly of the spindle. In conclusion, our data indicated that KIF16B is crucial for meiosis resumption and spindle assembly in mouse oocytes.
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