Literature DB >> 29570232

STX2 is a causative gene for nonobstructive azoospermia.

Shigeru Nakamura1,2, Yoshitomo Kobori3, Yoshihiko Ueda4, Yoko Tanaka5, Hiromichi Ishikawa6, Atsumi Yoshida7, Momori Katsumi1, Kazuki Saito1, Akie Nakamura1, Tsutomu Ogata8, Hiroshi Okada3, Hideo Nakai2, Mami Miyado1, Maki Fukami1.   

Abstract

STX2 encodes a sulfoglycolipid transporter. Although Stx2 nullizygosity is known to cause spermatogenic failure in mice, STX2 mutations have not been identified in humans. Here, we performed STX2 mutation analysis for 131 Japanese men clinically diagnosed with nonobstructive azoospermia. As a result, we identified a homozygous frameshift mutation [c.8_12delACCGG, p.(Asp3Alafs*8)] in one patient. The mutation-positive patient exhibited loss-of-heterozygosity for 58.4 Mb genomic regions involving STX2, suggesting possible parental consanguinity. The patient showed azoospermia, relatively small testes, and a mildly elevated follicle stimulating hormone level, but no additional clinical features. Testicular histology of the patient showed universal maturation arrest and multinucleated spermatocytes, which have also been observed in mice lacking Stx2. PCR-based cDNA screening revealed wildtype STX2 expression in various tissues including the testis. Our results indicate that STX2 nullizygosity results in nonsyndromic maturation arrest with multinucleated spermatocytes, and accounts for a small fraction of cases with nonobstructive azoospermia.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  STX2; azoospermia; infertility; maturation arrest; multinucleated spermatocytes

Mesh:

Substances:

Year:  2018        PMID: 29570232     DOI: 10.1002/humu.23423

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  5 in total

1.  Birth of mice from meiotically arrested spermatocytes following biparental meiosis in halved oocytes.

Authors:  Narumi Ogonuki; Hirohisa Kyogoku; Toshiaki Hino; Yuki Osawa; Yasuhiro Fujiwara; Kimiko Inoue; Tetsuo Kunieda; Seiya Mizuno; Hiroyuki Tateno; Fumihiro Sugiyama; Tomoya S Kitajima; Atsuo Ogura
Journal:  EMBO Rep       Date:  2022-05-19       Impact factor: 9.071

2.  Genetic defects in human azoospermia.

Authors:  Farah Ghieh; Valérie Mitchell; Béatrice Mandon-Pepin; François Vialard
Journal:  Basic Clin Androl       Date:  2019-04-23

3.  Histone H3 methylation orchestrates transcriptional program in mouse spermatogenic cell line.

Authors:  Xiao-Fei Wang; Qing Tian; Wei-Bing Qin; Ying Yin; Ling Zeng; Yun-Ge Tang; Ping Su; Li-Quan Zhou
Journal:  J Reprod Dev       Date:  2020-02-11       Impact factor: 2.214

4.  Whole Exome Sequencing Identifies Genes Associated With Non-Obstructive Azoospermia.

Authors:  Hongguo Zhang; Wei Li; Yuting Jiang; Jia Li; Mucheng Chen; Ruixue Wang; Jing Zhao; Zhiyu Peng; Hui Huang; Ruizhi Liu
Journal:  Front Genet       Date:  2022-04-13       Impact factor: 4.772

5.  Infertility network and hub genes for nonobstructive azoospermia utilizing integrative analysis.

Authors:  Baoquan Han; Zihui Yan; Shuai Yu; Wei Ge; Yaqi Li; Yan Wang; Bo Yang; Wei Shen; Hui Jiang; Zhongyi Sun
Journal:  Aging (Albany NY)       Date:  2021-02-17       Impact factor: 5.682

  5 in total

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