Bi-allelic variants in DNAH10 cause asthenoteratozoospermia and male infertility

DNAH10 的双等位基因变异导致弱精子症和男性不育

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作者:Kuokuo Li #, Guanxiong Wang #, Mingrong Lv #, Jieyu Wang #, Yang Gao, Fei Tang, Chuan Xu, Wen Yang, Hui Yu, Zhongmei Shao, Hao Geng, Qing Tan, Qunshan Shen, Dongdong Tang, Xiaoqing Ni, Tianjuan Wang, Bing Song, Huan Wu, Ran Huo, Zhiguo Zhang, Yuping Xu, Ping Zhou, Fangbiao Tao, Zhaolian Wei, Xiaojin

Conclusions

We identified putative novel pathogenic variants in DNAH10 for MMAF, which might advance the genetic diagnosis and clinical genetic counselling for male infertility.

Methods

We performed whole-exome sequencing of patients with MMAF to identify pathogenic variants. The phenotypes of spermatozoa in patients carrying DNAH10 variants were investigated using haematoxylin and eosin staining, scanning electron microscopy, and transmission electron microscopy. The expression and location of DNAH10 and other spermatozoa structure-related proteins were analyzed using immunofluorescence assays.

Purpose

Multiple morphological abnormalities in the sperm flagella (MMAF) comprise a severe phenotype of asthenoteratozoospermia with reduced or absent spermatozoa motility. Whereas dozens of candidate pathogenic genes for MMAF have been identified, the genetic cause in a large proportion of patients is unknown. We attempted to identify novel genetic explanations for MMAF.

Results

We found one homozygous frameshift DNAH10 variant (NM_207437: c.2514delG:p.L839*) and one compound heterozygous DNAH10 variant (NM_207437: c.10820 T > C:p.M3607T; c.12692C > T:p.T4231I) in two patients with MMAF. These variants were absent or rare in the general population. Haematoxylin and eosin staining and scanning electron microscopy revealed the significant disruption of sperm flagella in the patients. In addition, ultrastructural analysis by transmission electron microscopy showed significant inner dynein arm (IDA) deficiency in sperm flagella. Using immunofluorescence assays, we found a significant reduction in IDA-related proteins including DNAH10 and DNAH1. Conclusions: We identified putative novel pathogenic variants in DNAH10 for MMAF, which might advance the genetic diagnosis and clinical genetic counselling for male infertility.

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