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Loss of Axdnd1 causes sterility due to impaired spermatid differentiation in mice.
Hiradate, Yuki; Harima, Ryua; Yanai, Rin; Hara, Kenshiro; Nagasawa, Kazue; Osada, Makoto; Kobayashi, Tomoe; Matsuyama, Makoto; Kanno, Shin-Ichiro; Yasui, Akira; Tanemura, Kentaro.
Afiliação
  • Hiradate Y; Laboratory of Animal Reproduction and Development Graduate School of Agricultural Science Tohoku University Sendai Japan.
  • Harima R; Present address: Department of Experimental Genome Research Research Institute for Microbial Diseases Osaka University Osaka Japan.
  • Yanai R; Laboratory of Animal Reproduction and Development Graduate School of Agricultural Science Tohoku University Sendai Japan.
  • Hara K; Laboratory of Animal Reproduction and Development Graduate School of Agricultural Science Tohoku University Sendai Japan.
  • Nagasawa K; Laboratory of Animal Reproduction and Development Graduate School of Agricultural Science Tohoku University Sendai Japan.
  • Osada M; Laboratory of Aquacultural Biology Graduate School of Agricultural Science Tohoku University Sendai Japan.
  • Kobayashi T; Laboratory of Aquacultural Biology Graduate School of Agricultural Science Tohoku University Sendai Japan.
  • Matsuyama M; Division of Molecular Genetics Shigei Medical Research Institute Okayama Japan.
  • Kanno SI; Division of Molecular Genetics Shigei Medical Research Institute Okayama Japan.
  • Yasui A; Division of Dynamic Proteome and IDAC Fellow Research Group for DNA Repair and Dynamic Proteome Institute of Development Aging and Cancer (IDAC) Tohoku University Sendai Japan.
  • Tanemura K; Division of Dynamic Proteome and IDAC Fellow Research Group for DNA Repair and Dynamic Proteome Institute of Development Aging and Cancer (IDAC) Tohoku University Sendai Japan.
Reprod Med Biol ; 21(1): e12452, 2022.
Article em En | MEDLINE | ID: mdl-35386379
ABSTRACT

Purpose:

Spermiogenesis, the process of deformation of sperm head morphology and flagella formation, is a phenomenon unique to sperm. Axonemal dynein light chain proteins are localized to sperm flagella and are known to be involved in sperm motility. Here, we focused on the gene axonemal dynein light chain domain containing 1 (Axdnd1) with the aim to determine the function of its protein product AXDND1.

Methods:

To elucidate the role of AXDND1 in spermatogenesis, we generated Axdnd1 knockout (KO) mice using the CRISPR/Cas9 system. The generated mice were subjected to fertility tests and analyzed by immunohistochemistry.

Result:

The Axdnd1 KO mouse exhibited sterility caused by impaired spermiogenesis during the elongation step as well as abnormal nuclear shaping and manchette, which are essential for spermiogenesis. Moreover, AXDND1 showed enriched testicular expression and was localized from the mid-pachytene spermatocytes to the early spermatids.

Conclusion:

Axdnd1 is essential for spermatogenesis in the mouse testes. These findings improve our understanding of spermiogenesis and related defects. According to a recent report, deleterious heterozygous mutations in AXDND1 were found in non-obstructive azoospermia (NOA) patients. Therefore, Axdnd1 KO mice could be used as a model system for NOA, which will greatly contribute to future NOA treatment studies.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article