细胞生物学
卵母细胞
自噬
内体
生物
内吞循环
粒体自噬
母子转换
合子
拉布
胚胎
内吞作用
胚胎发生
细胞
遗传学
GTP酶
细胞内
细胞凋亡
作者
Wenwen Liu,Kehan Wang,Yu-Ting Lin,Sheng Wang,Xin Jin,Yuexin Qiu,Wenya Sun,Ling Zhang,Yan Sun,Xiaowei Dou,Shi‐Ming Luo,You‐Qiang Su,Qing‐Yuan Sun,Wenpei Xiang,Feiyang Diao,Jing Li
标识
DOI:10.1002/advs.202308823
摘要
Abstract Asynchronous nuclear and cytoplasmic maturation in human oocytes is believed to cause morphological anomalies after controlled ovarian hyperstimulation. Vacuolar protein sorting 34 (VPS34) is renowned for its pivotal role in regulating autophagy and endocytic trafficking. To investigate its impact on oocyte development, oocyte‐specific knockout mice (ZcKO) are generated, and these mice are completely found infertile, with embryonic development halted at 2‐ to 4‐cell stage. This infertility is related with a disruption on autophagic/mitophagic flux in ZcKO oocytes, leading to subsequent failure of zygotic genome activation (ZGA) in derived 2‐cell embryos. The findings further elucidated the regulation of VPS34 on the activity and subcellular translocation of RAS‐related GTP‐binding protein 7 (RAB7), which is critical not only for the maturation of late endosomes and lysosomes, but also for initiating mitophagy via retrograde trafficking. VPS34 binds directly with RAB7 and facilitates its activity conversion through TBC1 domain family member 5 (TBC1D5). Consistent with the cytoplasmic vacuolation observed in ZcKO oocytes, defects in multiple vesicle trafficking systems are also identified in vacuolated human oocytes. Furthermore, activating VPS34 with corynoxin B (CB) treatment improved oocyte quality in aged mice. Hence, VPS34 activation may represent a novel approach to enhance oocyte quality in human artificial reproduction.
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