Institute of Pediatrics, Children's Hospital of Fudan University, the Institutes of Biomedical Sciences, the State Key Laboratory of Genetic Engineering, Fudan University, Shanghai, 200032, China.
NHC Key Lab of Reproduction Regulation, Shanghai Engineering Research Center of Reproductive Health Drug and Devices, Shanghai Institute for Biomedical and Pharmaceutical Technologies, Shanghai, 200237, China.
Hum Genet. 2023 Nov;142(11):1621-1631. doi: 10.1007/s00439-023-02606-5. Epub 2023 Sep 28.
Oocyte maturation defects are major phenotypes resulting in female infertility. Although many genetic factors have been found to be responsible for these phenotypes, the underlying pathogenic genes and variants remain to be identified. The anaphase promoting complex or cyclosome (APC/C) is known to be essential in the metaphase-to-anaphase transition. In this study, we identified two homozygous missense variants (c.986A > G, p.Y329C and c.988C > T, p.R330C) in CDC23 that are responsible for female infertility characterized by oocyte maturation defects in three infertile individuals. CDC23 (cell division cycle 23) is one of the core subunits of the APC/C. In vitro experiments showed that the variant c.986A > G (p.Y329C) led to a decrease in CDC23 protein level and the variant c.988C > T (p.R330C) changed the localization of CDC23 in HeLa cells and mouse oocytes. In vivo studies showed that Cdc23 mice successfully mimicked the patients' phenotype by causing low expression of CDC23 and APC4 and the accumulation of securin and cyclin B1 in oocytes. AZ3146 treatment was able to rescue the phenotype. Taken together, our findings reveal the important roles of CDC23 in human oocyte maturation and provide a new genetic marker for female infertility.
卵母细胞成熟缺陷是导致女性不孕的主要表型。尽管已经发现许多遗传因素是这些表型的原因,但潜在的致病基因和变异仍有待确定。后期促进复合物或细胞周期蛋白(APC/C)在中期到后期的转变中是必不可少的。在这项研究中,我们在 CDC23 中鉴定了两个纯合错义变异(c.986A>G,p.Y329C 和 c.988C>T,p.R330C),这些变异导致了三个不孕个体的卵母细胞成熟缺陷特征的女性不育。CDC23(细胞分裂周期 23)是 APC/C 的核心亚基之一。体外实验表明,变体 c.986A>G(p.Y329C)导致 CDC23 蛋白水平降低,变体 c.988C>T(p.R330C)改变了 HeLa 细胞和小鼠卵母细胞中 CDC23 的定位。体内研究表明,Cdc23 小鼠通过导致 CDC23 和 APC4 的低表达以及卵母细胞中 securin 和 cyclin B1 的积累成功模拟了患者的表型。AZ3146 治疗能够挽救表型。总之,我们的发现揭示了 CDC23 在人类卵母细胞成熟中的重要作用,并为女性不育提供了一个新的遗传标记。