Pathogenesis of acephalic spermatozoa syndrome caused by SUN5 variant

生物 复合杂合度 突变 无意义介导的衰变 外显子组测序 精子 分子生物学 男性不育 发病机制 遗传学 不育 基因 免疫学 怀孕 RNA剪接 核糖核酸
作者
Duo Zhang,Wu-Jian Huang,Guoyong Chen,Lihong Dong,Ying Tang,Hui Zhang,LI Qingqin,Xiao-Yan Mei,Zhihong Wang,Fenghua Lan
出处
期刊:Molecular human reproduction [Oxford University Press]
卷期号:27 (5) 被引量:29
标识
DOI:10.1093/molehr/gaab028
摘要

Acephalic spermatozoa syndrome (ASS) is a rare teratozoospermia that leads to male infertility. Previous work suggested a genetic origin. Variants of Sad1 and UNC84 domain containing 5 (SUN5) are the main genetic cause of ASS; however, its pathogenesis remains unclear. Here, we performed whole-exome sequencing in 10 unrelated ASS and identified 2 homozygous variants, c.381delA[p.V128Sfs7*] and c.675C>A[p.Y225X], and 1 compound variant, c.88 C > T[p.R30X] and c.381 delA [p.V128Sfs7*], in SUN5 in 4 patients. The c.381delA variant had been identified as pathogenic in previous reports, while c.675C>A and c.88 C > T were two novel variants which could lead to a premature termination codon (PTC) and resulted in loss of SUN5, and may also be pathogenic. SUN5 mRNA and protein were present at very low levels in ASS patients with SUN5 nonsense mutation. Furthermore, the distribution of outer dense fiber protein 1 (ODF1) and Nesprin3 was altered in sperm of ASS patients with SUN5 variants. The co-immunoprecipitation analysis indicated that SUN5 and ODF1, SUN5 and Nesprin3, and ODF1 and Nesprin3 interacted with each other in transfected HEK293T cells. Thus, we propose that SUN5, Nesprin3, and ODF1 may form a 'triplet' structure through interactions at neck of sperm. When gene variants resulted in a loss of SUN5, the 'triplet' structure disappears and then the head-tail junction becomes fragile, leading to the occurrence of ASS.
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