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减数分裂阻滞和非梗阻性无精子症中MND1错义变异的鉴定。

Identification of a missense variant of MND1 in meiotic arrest and non-obstructive azoospermia.

作者信息

Zhao Jingpeng, Ji Zhiyong, Meng Guiquan, Luo Jiaqiang, Zhang Yuxiang, Ou Ningjing, Bai Haowei, Tian Ruhui, Zhi Erlei, Huang Yuhua, Liu Nachuan, He Wenbin, Tan Yueqiu, Li Zheng, Yao Chencheng, Li Peng

机构信息

State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing, 211100, China.

Department of Andrology, Center for Men's Health, Department of ART, Institute of Urology, Urologic Medical Center, Shanghai Key Laboratory of Reproductive Medicine, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200080, China.

出版信息

J Hum Genet. 2023 Nov;68(11):729-735. doi: 10.1038/s10038-023-01172-y. Epub 2023 Jun 26.

Abstract

Meiotic arrest is a common pathologic phenotype of non-obstructive azoospermia (NOA), yet its genetic causes require further investigation. Meiotic nuclear divisions 1 (MND1) has been proved to be indispensable for meiotic recombination in many species. To date, only one variant of MND1 has been reported associated with primary ovarian insufficiency (POI), yet there has been no report of variants in MND1 associated with NOA. Herein, we identified a rare homozygous missense variant (NM_032117:c.G507C:p.W169C) of MND1 in two NOA-affected patients from one Chinese family. Histological analysis and immunohistochemistry demonstrated meiotic arrest at zygotene-like stage in prophase I and lack of spermatozoa in the proband's seminiferous tubules. In silico modeling demonstrated that this variant might cause possible conformational change in the leucine zippers 3 with capping helices (LZ3wCH) domain of MND1-HOP2 complex. Altogether, our study demonstrated that the MND1 variant (c.G507C) is likely responsible for human meiotic arrest and NOA. And our study provides new insights into the genetic etiology of NOA and mechanisms of homologous recombination repair in male meiosis.

摘要

减数分裂阻滞是非梗阻性无精子症(NOA)的一种常见病理表型,但其遗传原因仍需进一步研究。在许多物种中,减数分裂核分裂1(MND1)已被证明对减数分裂重组不可或缺。迄今为止,仅报道了一种与原发性卵巢功能不全(POI)相关的MND1变体,而尚无与NOA相关的MND1变体的报道。在此,我们在一个中国家庭的两名受NOA影响的患者中鉴定出一种罕见的MND1纯合错义变体(NM_032117:c.G507C:p.W169C)。组织学分析和免疫组化显示,先证者的生精小管在减数分裂前期I的偶线期样阶段出现减数分裂阻滞且无精子。计算机模拟表明,该变体可能导致MND1-HOP2复合物的含帽螺旋亮氨酸拉链3(LZ3wCH)结构域发生构象变化。总之,我们的研究表明,MND1变体(c.G507C)可能是人类减数分裂阻滞和NOA的原因。我们的研究为NOA的遗传病因以及男性减数分裂中同源重组修复的机制提供了新的见解。

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