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Novel biallelic mutations inSLC26A8cause severe asthenozoospermia in humans owing to midpiece defects: Insights into a putative dominant genetic disease

精子无力症 生物 男性不育 遗传学 复合杂合度 突变 先证者 外显子组测序 不育 基因 怀孕
作者
Yang Gao,Huan Wu,Yuping Xu,Qunshan Shen,Chuan Xu,Hao Geng,Mingrong Lv,Qing Tan,Kuokuo Li,Dongdong Tang,Bing Song,Ping Zhou,Zhaolian Wei,Xiaojin He,Yunxia Cao
出处
期刊:Human Mutation [Wiley]
卷期号:43 (3): 434-443 被引量:16
标识
DOI:10.1002/humu.24322
摘要

To investigate the genetic cause of male infertility characterized by severe asthenozoospermia, two unrelated infertile men with severe asthenozoospermia from nonconsanguineous Chinese families were enrolled, and whole exome sequencing were performed to identify the potential pathogenic mutations. Novel compound heterozygous mutations (NK062 III-1: c.290T>C, p.Leu97Pro; c.1664delT, p.Ile555Thrfs*11/NK038 III-1: c.212G>T, p.Arg71Leu; c.290T>C, p.Leu97Pro) in SLC26A8 were identified. All mutations were inherited from their heterozygous parents and are predicted to be disease-causing by sorts intolerant from tolerant, PolyPhen-2, Mutation Taster, and Combined Annotation Dependent Depletion. In silico mutant SLC26A8 models predict that mutations p.Leu97Pro and p.Arg71Leu cause changes in the α-helix, which may result in functional defects in the protein. Notably, heterozygous male carriers of each mutation in both families were able to reproduce naturally, which is inconsistent with previous reports. Ultrastructural analysis revealed severe asthenozoospermia associated with absence of the mitochondrial sheath and annulus in spermatozoa from both the probands, and both structural defects were verified by HSP60 and SEPT4 immunofluorescence analysis. SLC26A8 levels were significantly reduced in spermatozoa from patients harboring biallelic SLC26A8 mutations, and both patients achieved good prognosis following intracytoplasmic sperm injection. Our findings indicate that mutations in SLC26A8 could manifest as a recessive genetic cause of severe asthenozoospermia and male infertility.
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