生物
无精子症
男性不育
外显子组测序
遗传学
无义突变
无意义介导的衰变
突变体
表型
生殖系
基因
不育
核糖核酸
RNA剪接
错义突变
怀孕
作者
Ming Li,Uzma Hameed,Yue Wang,Aoran Zhi,Jianteng Zhou,Muhammad Zubair,Ghulam Murtaza,Yufan Wu,Wasim Shah,Muhammad Zubair,Muzammil Ahmad Khan,Furhan Iqbal,Xiaohua Jiang,Huan Zhang,Qinghua Shi
摘要
Abstract Background HENMT1 encodes a small RNA methyltransferase that plays a crucial role in mouse spermatogenesis through the methylation of the 3′ end of PIWI‐interacting RNAs. Objectives Our study aims to elucidate the relationship between HENMT1 and male infertility in humans. Materials and methods A consanguineous family, having a single non‐obstructive azoospermia patient was recruited for pathogenic variants screening. The research includes genetic analysis and experimental validation using mouse models. The patient was diagnosed with non‐obstructive azoospermia. Whole‐exome sequencing and subsequent bioinformatic analyses were performed to screen for candidate pathogenic variants. The pathogenicity of the identified variant was assessed and studied in vivo using a mouse model that mimicked the patient's mutation. Results Through whole‐exome sequencing, we identified a homozygous nonsense variant (c.555G > A, p.Trp185*) in HENMT1 in the patient. The presence of the mutant HENMT1 mRNA was detected in the patient's blood, and the truncated HENMT1 protein was observed in transfected HEK293T cells. The mutant mice modeling this HENMT1 variant displayed an infertile phenotype similar to that of the patient, characterized by spermiogenesis arrest. Further analysis revealed a significant derepression of retrotransposon LINE1 in the testes of the Henmt1 mutant mice, and increased apoptosis of spermatids. Discussion and conclusion Our findings provide the evidence of pathogenicity of the identified HENMT1 variant, thus shedding light on the indispensable role of HENMT1 in human spermatogenesis.
科研通智能强力驱动
Strongly Powered by AbleSci AI