Novel homozygous SPAG17 variants cause human male infertility through multiple morphological abnormalities of spermatozoal flagella related to axonemal microtubule doublets.

Asian journal of andrology Pub Date : 2025-03-01 Epub Date: 2024-12-17 DOI:10.4103/aja202496
Tao Liu, Fazal Rahim, Meng-Lei Yang, Meftah Uddin, Jing-Wei Ye, Imtiaz Ali, Yousaf Raza, Abu Mansoor, Muhammad Shoaib, Mujahid Hussain, Ihsan Khan, Basit Shah, Asad Khan, Ahmad Nisar, Hui Ma, Bo Xu, Wasim Shah, Qing-Hua Shi
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Abstract

Abstract: Male infertility can result from impaired sperm motility caused by multiple morphological abnormalities of the flagella (MMAF). Distinct projections encircling the central microtubules of the spermatozoal axoneme play pivotal roles in flagellar bending and spermatozoal movement. Mammalian sperm-associated antigen 17 ( SPAG17 ) encodes a conserved axonemal protein of cilia and flagella, forming part of the C1a projection of the central apparatus, with functions related to ciliary/flagellar motility, skeletal growth, and male fertility. This study investigated two novel homozygous SPAG17 mutations (M1: NM_206996.2, c.829+1G>T, p.Asp212_Glu276del; and M2: c.2120del, p.Leu707*) identified in four infertile patients from two consanguineous Pakistani families. These patients displayed the MMAF phenotype confirmed by Papanicolaou staining and scanning electron microscopy assays of spermatozoa. Quantitative real-time polymerase chain reaction (PCR) of patients' spermatozoa also revealed a significant decrease in SPAG17 mRNA expression, and immunofluorescence staining showed the absence of SPAG17 protein signals along the flagella. However, no apparent ciliary-related symptoms or skeletal malformations were observed in the chest X-rays of any of the patients. Transmission electron microscopy of axoneme cross-sections from the patients showed incomplete C1a projection and a higher frequency of missing microtubule doublets 1 and 9 compared with those from fertile controls. Immunofluorescence staining and Western blot analyses of spermatogenesis-associated protein 17 (SPATA17), a component of the C1a projection, and sperm-associated antigen 6 (SPAG6), a marker of the spring layer, revealed disrupted expression of both proteins in the patients' spermatozoa. Altogether, these findings demonstrated that SPAG17 maintains the integrity of spermatozoal flagellar axoneme, expanding the phenotypic spectrum of SPAG17 mutations in humans.

新的同卵SPAG17变体通过与轴丝微管双联相关的精子鞭毛的多种形态异常导致人类男性不育。
摘要:男性不育是由鞭毛(MMAF)多种形态异常引起的精子运动能力受损引起的。在鞭毛弯曲和精子运动中,围绕着精子轴素中心微管的明显突起起着关键作用。哺乳动物精子相关抗原17 (SPAG17)编码一种保守的纤毛和鞭毛轴突蛋白,构成中央器官C1a投射的一部分,其功能与纤毛/鞭毛运动、骨骼生长和男性生育能力有关。本研究研究了两个新的纯合子SPAG17突变(M1: NM_206996.2, c.829+1G>T, p.Asp212_Glu276del;M2: c.2120del, p.Leu707*)在4例来自巴基斯坦两个近亲家庭的不育患者中鉴定。这些患者的精子经Papanicolaou染色和扫描电镜检测证实为MMAF表型。患者精子的实时定量聚合酶链反应(PCR)也显示SPAG17 mRNA表达显著降低,免疫荧光染色显示鞭毛沿线没有SPAG17蛋白信号。然而,在任何患者的胸部x光片中均未观察到明显的纤毛相关症状或骨骼畸形。透射电镜显示,与可育对照组相比,患者轴突横切面的C1a投射不完全,微管偶体1和9缺失的频率更高。精子发生相关蛋白17 (SPATA17)是C1a投射的组成部分,精子相关抗原6 (SPAG6)是春季层的标记物,免疫荧光染色和Western blot分析显示,患者精子中这两种蛋白的表达都被破坏。总之,这些发现表明SPAG17维持了精子鞭毛轴突的完整性,扩大了SPAG17在人类中的突变表型谱。
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