Literature DB >> 33070343

Novel loss-of-function variants in DNAH17 cause multiple morphological abnormalities of the sperm flagella in humans and mice.

Beibei Zhang1, Ihsan Khan1, Chunyu Liu2, Ao Ma1, Asad Khan1, Yuanwei Zhang1, Huan Zhang1, Mian Basit Shah Kakakhel1, Jianteng Zhou1, Wen Zhang3, Yang Li1, Asim Ali1, Xiaohua Jiang1, Ghulam Murtaza1, Ranjha Khan1, Muhammad Zubair1, Limin Yuan4, Mazhar Khan1, Li Wang5, Feng Zhang2, Xiong Wang6, Hui Ma1, Qinghua Shi1.   

Abstract

Multiple morphological abnormalities of the flagella (MMAF) is a genetically heterogeneous disorder leading to male infertility. Recent studies have revealed that DNAH17 variants are associated with MMAF, yet there is no functional evidence in support of their pathnogenicity. Here, we recruited two consanguineous families of Pakistani and Chinese origins, respectively, diagnosed with MMAF. Whole-exome sequencing identified novel homozygous DNAH17 variants, which led to loss of DNAH17 proteins, in the patients. Transmission electron microscope analyses revealed completely disorganized axonemal structure as the predominant anomaly and increased frequencies of missings of microtubule doublet(s) 4-7 in sperm flagella of patients. Similar to those found in patients, Dnah17-/- mice also displayed MMAF phenotype along with completely disorganized axonemal structures. Clusters of disorganized microtubules and outer dense fibers were observed in developing spermatids, indicating impaired sperm flagellar assembly. Besides, we also noticed many elongating spermatids with a deformed nuclear shape and abnormal step 16 spermatids that failed to spermiate, which subsequently underwent apoptosis in Dnah17-null mice. These findings present direct evidence establishing that DNAH17 is a MMAF-related gene in humans and mice, extend the clinical interpretations of DNAH17 variants, and highlight an essential and complex role of DNAH17 in spermatogenesis.
© 2020 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  asthenozoospermia; genetic diagnosis; male infertility; sperm flagellum; sperm motility; spermiation failure

Year:  2020        PMID: 33070343     DOI: 10.1111/cge.13866

Source DB:  PubMed          Journal:  Clin Genet        ISSN: 0009-9163            Impact factor:   4.438


  10 in total

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  10 in total

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