细胞生物学
卵母细胞
减数分裂II
减数分裂
高尔基体
有丝分裂
细胞周期蛋白B1
小型GTPase
生物
GTP酶
微管
多极纺锤
细胞周期蛋白B
细胞周期蛋白依赖激酶1
中心体
细胞周期
细胞周期蛋白
信号转导
遗传学
细胞
内质网
胚胎
基因
作者
Kun‐Huan Zhang,Yuanjing Zou,Meng‐Meng Shan,Zhen‐Nan Pan,Jia‐Qian Ju,Jing‐Cai Liu,Yiming Ji,Shao‐Chen Sun
标识
DOI:10.1002/advs.202303009
摘要
Abstract ADP‐ribosylation factor 1 (Arf1) is a small GTPase belonging to the Arf family. As a molecular switch, Arf1 is found to regulate retrograde and intra‐Golgi transport, plasma membrane signaling, and organelle function during mitosis. This study aimed to explore the noncanonical roles of Arf1 in cell cycle regulation and cytoskeleton dynamics in meiosis with a mouse oocyte model. Arf1 accumulated in microtubules during oocyte meiosis, and the depletion of Arf1 led to the failure of polar body extrusion. Unlike mitosis, it finds that Arf1 affected Myt1 activity for cyclin B1/CDK1‐based G2/M transition, which disturbed oocyte meiotic resumption. Besides, Arf1 modulated GM130 for the dynamic changes in the Golgi apparatus and Rab35‐based vesicle transport during meiosis. Moreover, Arf1 is associated with Ran GTPase for TPX2 expression, further regulating the Aurora A–polo‐like kinase 1 pathway for meiotic spindle assembly and microtubule stability in oocytes. Further, exogenous Arf1 mRNA supplementation can significantly rescue these defects. In conclusion, results reported the noncanonical functions of Arf1 in G2/M transition and meiotic spindle organization in mouse oocytes.
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