Zhou Su, Xi Yueyue, Chen Yingying, Wu Tong, Yan Wei, Li Milu, Wu Meng, Luo Aiyue, Shen Wei, Xiang Tao, Wang Shixuan
Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan Hubei, China.
Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan Hubei, China.
Reprod Biomed Online. 2021 Aug;43(2):161-171. doi: 10.1016/j.rbmo.2021.05.007. Epub 2021 May 19.
What role does wild-type p53-induced phosphatase 1 (WIP1) play in the regulation of primordial follicle development?
WIP1 expression was detected in the ovaries of mice of different ages by western blotting and immunohistochemical staining. Three-day-old neonatal mouse ovaries were cultured in vitro with or without the WIP1 inhibitor GSK2830371 (10 μM) for 4 days. Ovarian morphology, follicle growth and follicle classification were analysed and the PI3K-AKT-mTOR signal pathway and the WIP1-p53-related mitochondrial apoptosis pathway evaluated.
WIP1 expression was downregulated with age. Primordial follicles were significantly decreased in the GSK2830371-treated group, without a significant increase in growing follicles. The ratio of growing follicles to primordial follicles was not significantly different between the control and GSK2830371 groups, and no significant variation was observed in the PI3K-AKT-mTOR signal pathway. The inhibition of WIP1 phosphatase accelerated primordial follicle atresia by activating the p53-BAX-caspase-3 pathway.
These findings reveal that WIP1 participates in regulating primordial follicle development and that inhibiting WIP1 phosphatase leads to massive primordial follicle loss via interaction with the p53-BAX-caspase-3 pathway. This might also provide valuable information for understanding decreased ovarian reserve during ovarian ageing.
野生型p53诱导的磷酸酶1(WIP1)在原始卵泡发育调控中起什么作用?
通过蛋白质免疫印迹法和免疫组织化学染色检测不同年龄小鼠卵巢中的WIP1表达。将3日龄新生小鼠卵巢在有或无WIP1抑制剂GSK2830371(10 μM)的情况下体外培养4天。分析卵巢形态、卵泡生长和卵泡分类,并评估PI3K-AKT-mTOR信号通路和WIP1-p53相关的线粒体凋亡通路。
WIP1表达随年龄下调。GSK2830371处理组的原始卵泡显著减少,生长卵泡没有显著增加。对照组和GSK2830371组之间生长卵泡与原始卵泡的比例没有显著差异,PI3K-AKT-mTOR信号通路也没有观察到显著变化。抑制WIP1磷酸酶通过激活p53-BAX-半胱天冬酶-3通路加速原始卵泡闭锁。
这些发现表明WIP1参与调节原始卵泡发育,抑制WIP1磷酸酶通过与p53-BAX-半胱天冬酶-3通路相互作用导致大量原始卵泡丢失。这也可能为理解卵巢衰老过程中卵巢储备减少提供有价值的信息。