| Literature DB >> 32791035 |
Xiaojin He1, Chunyu Liu2, Xiaoyu Yang3, Mingrong Lv1, Xiaoqing Ni1, Qiang Li1, Huiru Cheng4, Wangjie Liu2, Shixiong Tian5, Huan Wu1, Yang Gao1, Chenyu Yang6, Qing Tan7, Jiangshan Cong5, Dongdong Tang1, Jingjing Zhang1, Bing Song1, Yading Zhong8, Hang Li7, Weiwei Zhi7, Xiaohong Mao7, Feifei Fu7, Lei Ge7, Qunshan Shen4, Manyu Zhang4, Hexige Saiyin9, Li Jin9, Yuping Xu1, Ping Zhou1, Zhaolian Wei1, Feng Zhang10, Yunxia Cao11.
Abstract
Multiple morphological abnormalities of the sperm flagella (MMAF) is a severe form of asthenoteratozoospermia. Although recent studies have revealed several MMAF-associated genes and demonstrated MMAF to be a genetically heterogeneous disease, at least one-third of the cases are still not well understood for their etiology. Here, we identified bi-allelic loss-of-function variants in CFAP58 by using whole-exome sequencing in five (5.6%) unrelated individuals from a cohort of 90 MMAF-affected Chinese men. Each of the men harboring bi-allelic CFAP58 variants presented typical MMAF phenotypes. Transmission electron microscopy demonstrated striking flagellar defects with axonemal and mitochondrial sheath malformations. CFAP58 is predominantly expressed in the testis and encodes a cilia- and flagella-associated protein. Immunofluorescence assays showed that CFAP58 localized at the entire flagella of control sperm and predominantly concentrated in the mid-piece. Immunoblotting and immunofluorescence assays showed that the abundances of axoneme ultrastructure markers SPAG6 and SPEF2 and a mitochondrial sheath protein, HSP60, were significantly reduced in the spermatozoa from men harboring bi-allelic CFAP58 variants. We generated Cfap58-knockout mice via CRISPR/Cas9 technology. The male mice were infertile and presented with severe flagellar defects, consistent with the sperm phenotypes in MMAF-affected men. Overall, our findings in humans and mice strongly suggest that CFAP58 plays a vital role in sperm flagellogenesis and demonstrate that bi-allelic loss-of-function variants in CFAP58 can cause axoneme and peri-axoneme malformations leading to male infertility. This study provides crucial insights for understanding and counseling of MMAF-associated asthenoteratozoospermia.Entities:
Keywords: CFAP58; MMAF; asthenoteratozoospermia; flagellum; mitochondrial sheath
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Year: 2020 PMID: 32791035 PMCID: PMC7477015 DOI: 10.1016/j.ajhg.2020.07.010
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025