Volume 27, Issue 2 (March 2025) 27, 268–275; 10.4103/aja202495
Novel biallelic MCMDC2 variants were associated with meiotic arrest and nonobstructive azoospermia
Bai, Hao-Wei1,*; Li, Na1,*; Zhang, Yu-Xiang1; Luo, Jia-Qiang1; Tian, Ru-Hui1; Li, Peng1; Huang, Yu-Hua1; Bai, Fu-Rong1; Deng, Cun-Zhong1; Zhao, Fu-Jun1; Mo, Ren2; Chi, Ning2; Zhou, Yu-Chuan3,4; Li, Zheng1; Yao, Chen-Cheng1; Zhi, Er-Lei1
1Department of Andrology, The Center for Men’s Health, Urologic Medical Center, Shanghai Key Laboratory of Reproductive Medicine, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200000, China
2Department of Urology, Inner Mongolia People’s Hospital, Inner Mongolia Urological Institute, Hohhot 010017, China
3International Peace Maternity and Child Health Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200000, China
4Shanghai Key Laboratory of Embryo Original Diseases, Shanghai 200000, China
Correspondence: Dr. EL Zhi (zhzzer1985@126.com) or Dr. CC Yao (yaochencheng@126.com)
Originally published: January 10, 2025 Received: June 23, 2024 Accepted: October 8, 2024
Abstract |
Nonobstructive azoospermia (NOA), one of the most severe types of male infertility, etiology often remains unclear in most cases. Therefore, this study aimed to detect four biallelic detrimental variants (0.5%) in the minichromosome maintenance domain containing 2 (MCMDC2) genes in 768 NOA patients by whole-exome sequencing (WES). Hematoxylin and eosin (H&E) demonstrated that MCMDC2 deleterious variants caused meiotic arrest in three patients (c.1360G>T, c.1956G>T, and c.685C>T) and hypospermatogenesis in one patient (c.94G>T), as further confirmed through immunofluorescence (IF) staining. The single-cell RNA sequencing data indicated that MCMDC2 was substantially expressed during spermatogenesis. The variants were confirmed as deleterious and responsible for patient infertility through bioinformatics and in vitro experimental analyses. The results revealed four MCMDC2 variants related to NOA, which contributes to the current perception of the function of MCMDC2 in male fertility and presents new perspectives on the genetic etiology of NOA.
Keywords: genetic variant; MCMDC2; meiotic arrest; nonobstructive azoospermia
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