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A DNAH17 missense variant causes flagella destabilization and asthenozoospermia
Author(s) -
Beibei Zhang,
Hui Ma,
Teka Khan,
Ao Ma,
Tao Li,
Huan Zhang,
Jianing Gao,
Jianteng Zhou,
Yang Li,
Changping Yu,
Jianqiang Bao,
Asim Ali,
Ghulam Murtaza,
Hao Yin,
Qian Gao,
Xiaohua Jiang,
Feng Zhang,
Chunyu Liu,
Ihsan Khan,
Muhammad Zubair,
Hafiz Muhammad Jafar Hussain,
Ranjha Khan,
Ayesha Yousaf,
Limin Yuan,
Yan Lu,
Xiaoling Xu,
Yun Wang,
Qizhao Tao,
Qiaomei Hao,
Hui Fang,
Hongtao Cheng,
Yuanwei Zhang,
Qinghua Shi
Publication year - 2019
Publication title -
the journal of experimental medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 8.483
H-Index - 448
eISSN - 1540-9538
pISSN - 0022-1007
DOI - 10.1084/jem.20182365
Subject(s) - asthenozoospermia , missense mutation , male infertility , biology , genetics , infertility , sperm , exome sequencing , azoospermia , mutation , gene , pregnancy
Asthenozoospermia is a common cause of male infertility, but its etiology remains incompletely understood. We recruited three Pakistani infertile brothers, born to first-cousin parents, displaying idiopathic asthenozoospermia but no ciliary-related symptoms. Whole-exome sequencing identified a missense variant (c.G5408A, p.C1803Y) in DNAH17, a functionally uncharacterized gene, recessively cosegregating with asthenozoospermia in the family. DNAH17, specifically expressed in testes, was localized to sperm flagella, and the mutation did not alter its localization. However, spermatozoa of all three patients showed higher frequencies of microtubule doublet(s) 4-7 missing at principal piece and end piece than in controls. Mice carrying a homozygous mutation (Dnah17M/M) equivalent to that in patients recapitulated the defects in patients' sperm tails. Further examinations revealed that the doublets 4-7 were destabilized largely due to the storage of sperm in epididymis. Altogether, we first report that a homozygous DNAH17 missense variant specifically induces doublets 4-7 destabilization and consequently causes asthenozoospermia, providing a novel marker for genetic counseling and diagnosis of male infertility.

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