首页> 美国卫生研究院文献>American Journal of Human Genetics >Bi-allelic Mutations in ARMC2 Lead to Severe Astheno-Teratozoospermia Due to Sperm Flagellum Malformations in Humans and Mice
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Bi-allelic Mutations in ARMC2 Lead to Severe Astheno-Teratozoospermia Due to Sperm Flagellum Malformations in Humans and Mice

机译:由于人类和小鼠精子鞭毛畸形ARMC2中的双等位基因突变导致严重的无精子-畸形精子症。

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摘要

Male infertility is a major health concern. Among its different causes, multiple morphological abnormalities of the flagella (MMAF) induces asthenozoospermia and is one of the most severe forms of qualitative sperm defects. Sperm of affected men display short, coiled, absent, and/or irregular flagella. To date, six genes (DNAH1, CFAP43, CFAP44, CFAP69, FSIP2, and WDR66) have been found to be recurrently associated with MMAF, but more than half of the cases analyzed remain unresolved, suggesting that many yet-uncharacterized gene defects account for this phenotype. Here, whole-exome sequencing (WES) was performed on 168 infertile men who had a typical MMAF phenotype. Five unrelated affected individuals carried a homozygous deleterious mutation in ARMC2, a gene not previously linked to the MMAF phenotype. Using the CRISPR-Cas9 technique, we generated homozygous Armc2 mutant mice, which also presented an MMAF phenotype, thus confirming the involvement of ARMC2 in human MMAF. Immunostaining experiments in AMRC2-mutated individuals and mutant mice evidenced the absence of the axonemal central pair complex (CPC) proteins SPAG6 and SPEF2, whereas the other tested axonemal and peri-axonemal components were present, suggesting that ARMC2 is involved in CPC assembly and/or stability. Overall, we showed that bi-allelic mutations in ARMC2 cause male infertility in humans and mice by inducing a typical MMAF phenotype, indicating that this gene is necessary for sperm flagellum structure and assembly.
机译:男性不育是主要的健康问题。在其不同的原因中,鞭毛的多种形态异常(MMAF)诱发精子弱精子症,是最严重的定性精子缺陷形式之一。患病男性的精子表现出短,卷曲,缺席和/或不规则的鞭毛。迄今为止,已经发现六个基因(DNAH1,CFAP43,CFAP44,CFAP69,FSIP2和WDR66)与MMAF反复相关,但一半以上的案例仍未解决,这表明许多尚未鉴定的基因缺陷是导致这种表型。在这里,对具有典型MMAF表型的168名不育男性进行了全外显子测序(WES)。五个无关的受影响个体在ARMC2中携带了纯合子有害突变,该基因先前未与MMAF表型相关。使用CRISPR-Cas9技术,我们产生了纯合的Armc2突变小鼠,该小鼠也表现出MMAF表型,从而证实了ARMC2参与人MMAF。在AMRC2突变的个体和突变小鼠中进行的免疫染色实验表明,不存在轴突中枢复合体(CPC)蛋白SPAG6和SPEF2,而存在其他测试的轴突和轴突周围成分,表明ARMC2参与了CPC组装和/或稳定性。总的来说,我们显示出ARMC2中的双等位基因突变通过诱导典型的MMAF表型而导致人类和小鼠的男性不育,表明该基因对于精子鞭毛的结构和组装是必需的。

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