VPS34通过调控线粒体/自噬作用控制卵母细胞的发育能力:对RAB7活性及其亚细胞位置重要性的新认识

IF 14.3 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Wenwen Liu, Kehan Wang, Yuting Lin, Lu Wang, Xin Jin, Yuexin Qiu, Wenya Sun, Ling Zhang, Yan Sun, Xiaowei Dou, Shiming Luo, Youqiang Su, Qingyuan Sun, Wenpei Xiang, Feiyang Diao, Jing Li
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引用次数: 0

摘要

人类卵母细胞的核成熟和胞质成熟不同步被认为是导致控制性卵巢过度刺激后形态异常的原因。空泡蛋白分选 34(VPS34)因其在调节自噬和内吞转运中的关键作用而闻名。为了研究它对卵母细胞发育的影响,我们产生了卵母细胞特异性基因敲除小鼠(ZcKO),发现这些小鼠完全不育,胚胎发育停止在 2 至 4 细胞阶段。这种不育与 ZcKO 卵母细胞中自噬/噬米通量的破坏有关,导致随后衍生的 2 细胞胚胎中子代基因组激活(ZGA)失败。研究结果进一步阐明了VPS34对RAS相关GTP结合蛋白7(RAB7)的活性和亚细胞转位的调控,RAB7不仅对晚期内体和溶酶体的成熟至关重要,而且对通过逆向运输启动有丝分裂也至关重要。VPS34 直接与 RAB7 结合,并通过 TBC1 结构域家族成员 5(TBC1D5)促进其活性转换。与在 ZcKO 卵母细胞中观察到的细胞质空泡化一致,在空泡化的人类卵母细胞中也发现了多种囊泡贩运系统的缺陷。此外,用堇菜毒素 B(CB)激活 VPS34 可改善老龄小鼠的卵母细胞质量。因此,激活 VPS34 可能是提高人类人工生殖卵母细胞质量的一种新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

VPS34 Governs Oocyte Developmental Competence by Regulating Mito/Autophagy: A Novel Insight into the Significance of RAB7 Activity and Its Subcellular Location

VPS34 Governs Oocyte Developmental Competence by Regulating Mito/Autophagy: A Novel Insight into the Significance of RAB7 Activity and Its Subcellular Location
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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来源期刊
Advanced Science
Advanced Science CHEMISTRY, MULTIDISCIPLINARYNANOSCIENCE &-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
18.90
自引率
2.60%
发文量
1602
审稿时长
1.9 months
期刊介绍: Advanced Science is a prestigious open access journal that focuses on interdisciplinary research in materials science, physics, chemistry, medical and life sciences, and engineering. The journal aims to promote cutting-edge research by employing a rigorous and impartial review process. It is committed to presenting research articles with the highest quality production standards, ensuring maximum accessibility of top scientific findings. With its vibrant and innovative publication platform, Advanced Science seeks to revolutionize the dissemination and organization of scientific knowledge.
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