Zhuan Qingrui, Li Jun, Du Xingzhu, Zhang Luyao, Meng Lin, Cheng Keren, Zhu Shien, Hou Yunpeng, Fu Xiangwei
National Engineering Laboratory for Animal Breeding, Beijing Key Laboratory for Animal Genetic Improvement, College of Animal Science and Technology, China Agricultural University, Beijing, China.
Department of Reproducitve Medicine, Reproductive Medical Center, The First Hospital of Hebei Medical University, Shijiazhuang, Hebei, China.
J Cell Physiol. 2022 Jan;237(1):647-659. doi: 10.1002/jcp.30532. Epub 2021 Jul 28.
Maternal aging can impair the quality and decrease the developmental competence of ovulated oocytes. In this study, compromised germinal vesicle breakdown (GVBD) was found in aged mice oocytes. Furthermore, we observed increased reactive oxygen species (ROS) and mitochondrial Ca levels, along with reduced mitochondrial temperature in aged oocytes. Maternal aging also changed the crotonylation level in oocytes. Forkhead box O3 (FoxO3a), a member of the forkhead protein family involved in the regulation of cell survival and life span reached a peak level in the metaphase II stage. Compared with a younger group, FoxO3a expression increased in aged oocytes. Intracellular localization of FoxO3a changed from the cytoplasm to chromatin in response to aging. The expression of the upstream regulator nicotinamide-phosphoribosyltransferase (Nampt) peaked in the GVBD stage. Moreover, Nampt expression was increased in aged oocytes, and more intense staining of Nampt was found in aged mice ovary. To further study the role of Nampt in mitochondrial function, specific agonist P7C3 and inhibitor FK866 were applied to aged oocytes, and FK866 significantly decreased adenosine triphosphate and mitochondrial membrane potential. In conclusion, mitochondrial dysfunction in aged oocytes was associated with elevated FoxO3a, and suppression of Nampt could further impair mitochondrial function.
母体衰老会损害排卵卵母细胞的质量并降低其发育能力。在本研究中,在老龄小鼠卵母细胞中发现生发泡破裂(GVBD)受损。此外,我们观察到老龄卵母细胞中活性氧(ROS)和线粒体钙水平升高,同时线粒体温度降低。母体衰老还改变了卵母细胞中的巴豆酰化水平。叉头框O3(FoxO3a)是参与细胞存活和寿命调节的叉头蛋白家族成员,在中期II期达到峰值水平。与年轻组相比,老龄卵母细胞中FoxO3a表达增加。随着衰老,FoxO3a的细胞内定位从细胞质转变为染色质。上游调节因子烟酰胺磷酸核糖转移酶(Nampt)的表达在GVBD期达到峰值。此外,老龄卵母细胞中Nampt表达增加,在老龄小鼠卵巢中发现Nampt染色更强烈。为了进一步研究Nampt在线粒体功能中的作用,将特异性激动剂P7C3和抑制剂FK866应用于老龄卵母细胞,FK866显著降低了三磷酸腺苷和线粒体膜电位。总之,老龄卵母细胞中的线粒体功能障碍与FoxO3a升高有关,抑制Nampt可进一步损害线粒体功能。