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Bi-allelic humanTEKT3mutations cause male infertility with oligoasthenoteratozoospermia owing to acrosomal hypoplasia and reduced progressive motility

精子无力症 生物 男性不育 精子活力 精子 男科 遗传学 不育 桑格测序 突变 施肥 运动性 等位基因 基因 生殖技术 胚胎发生 怀孕 医学
作者
Yiyuan Liu,Yuqian Li,Lanlan Meng,Kuokuo Li,Yang Gao,Mingrong Lv,Rui Guo,Yuping Xu,Ping Zhou,Zhaolian Wei,Xiaojin He,Yunxia Cao,Huan Wu,Yue‐Qiu Tan,Rong Hua
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:32 (10): 1730-1740 被引量:18
标识
DOI:10.1093/hmg/ddad013
摘要

Oligoasthenoteratozoospermia (OAT) can result in male infertility owing to reduced sperm motility and abnormal spermatozoan morphology. The Tektins are a family of highly conserved filamentous proteins expressed in the axoneme and associated structures in many different metazoan species. Earlier studies on mice identified Tektin3 (Tekt3) as a testis-enriched gene, and knockout of Tekt3 resulted in asthenozoospermia in the mice. Here, whole-exome sequencing of 100 males with asthenozoospermia from unrelated families was performed, followed by Sanger sequencing, leading to the identification of TEKT3 as a candidate gene in two of these patients and their associated family members. In total, three mutations in the TEKT3 gene were identified in both these patients, including one homozygous deletion-insertion mutation (c.543_547delinsTTGAT: p.Glu182*) and one compound heterozygous mutation (c.[548G > A]; [752A > C], p.[Arg183Gln]; [Gln251Pro]). Both of these mutations resulted in the complete loss of TEKT3 expression. The patients were both found to produce sperm that, although those showed no apparent defects in the flagellar structure, had reduced progressive motility. In contrast to mice, most sperm from these two patients exhibited acrosomal hypoplasia, although this did not prevent the use of the sperm for in vitro fertilization through an ICSI approach. TEKT3 was found to bind to other TEKT proteins, suggesting that these proteins form a complex within human spermatozoa. Overall, these results suggest that a loss of TEKT3 function can contribute to OAT incidence in humans. TEKT3 deficiencies can reduce sperm motility and contribute to severe acrosomal hypoplasia in spermatozoa, compromising their normal function.
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