Chizuru Ito, Kenji Yamatoya, Keiichi Yoshida, Lisa Fujimura, Hajime Sugiyama, Akiko Suganami, Yutaka Tamura, Masahiko Hatano, Kenji Miyado, Kiyotaka Toshimori
Reproduction 156(6) 579-590 2018年12月 査読有り筆頭著者
A number of sperm proteins are involved in the processes from gamete adhesion to fusion, but the underlying mechanism is still unclear. Here, we established a mouse mutant, the EQUATORIN-knockout (EQTN-KO,<italic> Eqtn</italic>
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</italic>) mouse model and found that the EQTN-KO males have reduced fertility and sperm–egg adhesion, while the EQTN-KO females are fertile. <italic>Eqtn</italic>
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</italic> sperm were normal in morphology and motility. <italic>Eqtn</italic>
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<italic>-</italic>Tg (<italic>Acr-Egfp</italic>) sperm, which were produced as the acrosome reporter by crossing <italic>Eqtn</italic>
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</italic> with <italic>Eqtn</italic>
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</italic>-Tg(<italic>Acr-Egfp</italic>) mice, traveled to the oviduct ampulla and penetrated the egg zona pellucida of WT females. However, <italic>Eqtn</italic>
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</italic> males mated with WT females showed significant reduction in both fertility and the number of sperm attached to the zona-free oocyte. Sperm IZUMO1 and egg CD9 behaved normally in <italic>Eqtn</italic>
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</italic> sperm when they were fertilized with WT egg. Another acrosomal protein, SPESP1, behaved aberrantly in <italic>Eqtn</italic>
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</italic> sperm during the acrosome reaction. The fertility impairment of EQTN/SPESP1-double KO males lacking <italic>Eqtn</italic> and <italic>Spesp1</italic> (<italic>Eqtn</italic>/<italic>Spesp1</italic>
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</italic>) was more severe compared with that of <italic>Eqtn</italic>
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</italic> males. <italic>Eqtn</italic>
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</italic>-Tg (<italic>Eqtn</italic>) males, which were generated to rescue <italic>Eqtn</italic>
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</italic>males, restored the reduced fertility.