A Homozygous Variant in DMRTB1 Is Associated With Non‐Obstructive Azoospermia in Humans

Non-obstructive azoospermia (NOA) represents the most severe form of male infertility, and the pathogenesis in partial patients can be attributed to endocrine dysfunction or heritable genetic variants. Although the application of whole-exome sequencing (WES) has facilitated the identification of numerous pathogenic genes associated with NOA, the genetic etiology of a significant proportion of cases remains elusive. In this study, we identified an NOA patient carrying a novel variant in DMRTB1 (c.792-797del, p.265-266del). The variant was rare in public databases and predicted to be likely pathogenic according to the American College of Medical Genetics (ACMG) guidelines. Structural modeling performed by SWISS-MODEL revealed the localized structural perturbations within residues 254-266, which may induce functional alterations. Histological analysis (H&E staining) of the testicular tissue revealed a complete absence of mature sperm within the seminiferous tubules, which is consistent with the essential role of this gene demonstrated in Dmrt6 knockout mice. Our findings demonstrate that the identified DMRTB1 variant is closely associated with the pathogenesis of NOA, thereby providing valuable genetic evidence for the diagnosis of NOA.

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Publication Details

Journal
Clinical Genetics
Published
2026-09-13
DOI
https://doi.org/10.1111/cge.70243
Primary Topic
Sperm and Testicular Function
Type
article
Field-Weighted Citation Impact
0.00

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article

A Homozygous Variant in DMRTB1 Is Associated With Non‐Obstructive Azoospermia in Humans

Wen Yu, Shuai Lü, Haoqiang Zhang, Qihan Chen et al.
Clinical Genetics
Sperm and Testicular Function
article

A Homozygous Variant in DMRTB1 Is Associated With Non‐Obstructive Azoospermia in Humans

Wen Yu, Shuai Lü, Haoqiang Zhang, Qihan Chen, Xun Wang, Yuhang Li, Yisong Ju, Xiaozhi Zhao, Ao Ma, Liang Shi
article en

Abstract

Non-obstructive azoospermia (NOA) represents the most severe form of male infertility, and the pathogenesis in partial patients can be attributed to endocrine dysfunction or heritable genetic variants. Although the application of whole-exome sequencing (WES) has facilitated the identification of numerous pathogenic genes associated with NOA, the genetic etiology of a significant proportion of cases remains elusive. In this study, we identified an NOA patient carrying a novel variant in DMRTB1 (c.792-797del, p.265-266del). The variant was rare in public databases and predicted to be likely pathogenic according to the American College of Medical Genetics (ACMG) guidelines. Structural modeling performed by SWISS-MODEL revealed the localized structural perturbations within residues 254-266, which may induce functional alterations. Histological analysis (H&E staining) of the testicular tissue revealed a complete absence of mature sperm within the seminiferous tubules, which is consistent with the essential role of this gene demonstrated in Dmrt6 knockout mice. Our findings demonstrate that the identified DMRTB1 variant is closely associated with the pathogenesis of NOA, thereby providing valuable genetic evidence for the diagnosis of NOA.

Clinical Genetics
University of Macau (MO), Nanjing Drum Tower Hospital (CN), City University of Macau (MO)
National Natural Science Foundation of China
Gender equality
Openalex Percentile: Top 9%
Sperm and Testicular Function
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