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一种具有睾丸特异性E1亚基同工型的质子泵ATP酶,顶体酸化需要该酶。

A proton pump ATPase with testis-specific E1-subunit isoform required for acrosome acidification.

作者信息

Sun-Wada Ge-Hong, Imai-Senga Yoko, Yamamoto Akitsugu, Murata Yoshiko, Hirata Tomoyuki, Wada Yoh, Futai Masamitsu

机构信息

Division of Biological Sciences, Institute of Scientific and Industrial Research, Osaka University, Core Research for Evolutional Science and Technology (CREST) of the Japan Science and Technology Corp., Osaka 567-0047, Japan.

出版信息

J Biol Chem. 2002 May 17;277(20):18098-105. doi: 10.1074/jbc.M111567200. Epub 2002 Feb 28.

Abstract

The vacuolar-type H(+)-ATPases (V-ATPases) are a family of multimeric proton pumps involved in a wide variety of physiological processes. We have identified two novel mouse genes, Atp6e1 and Atp6e2, encoding testis-specific (E1) and ubiquitous (E2) V-ATPase subunit E isoforms, respectively. The E1 transcript appears about 3 weeks after birth, corresponding to the start of meiosis, and is expressed specifically in round spermatids in seminiferous tubules. Immunohistochemistry with isoform-specific antibodies revealed that the V-ATPase with E1 and a2 isoforms is located specifically in developing acrosomes of spermatids and acrosomes in mature sperm. In contrast, the E2 isoform was expressed in all tissues examined and present in the perinuclear compartments of spermatocytes. The E1 isoform exhibits 70% identity with the E2, and both isoforms functionally complemented a null mutation of the yeast counterpart VMA4, indicating that they are bona fide V-ATPase subunits. The chimeric enzymes showed slightly lower K(m)(ATP) than yeast V-ATPase. Consistent with the temperature-sensitive growth of Deltavma4-expressing E1 isoform, vacuolar membrane vesicles exhibited temperature-sensitive coupling between ATP hydrolysis and proton transport. These results suggest that E1 isoform is essential for energy coupling involved in acidification of acrosome.

摘要

液泡型H(+)-ATP酶(V-ATP酶)是一族多聚体质子泵,参与多种生理过程。我们鉴定出两个新的小鼠基因,Atp6e1和Atp6e2,它们分别编码睾丸特异性(E1)和遍在性(E2)的V-ATP酶亚基E同工型。E1转录本在出生后约3周出现,与减数分裂开始相对应,且在生精小管的圆形精子细胞中特异性表达。用同工型特异性抗体进行的免疫组织化学显示,具有E1和a2同工型的V-ATP酶特异性定位于精子细胞发育中的顶体和成熟精子的顶体中。相反,E2同工型在所检测的所有组织中表达,并存在于精母细胞的核周区室中。E1同工型与E2具有70%的同一性,且两种同工型在功能上都能互补酵母对应物VMA4的无效突变,表明它们是真正的V-ATP酶亚基。嵌合酶的K(m)(ATP)略低于酵母V-ATP酶。与表达E1同工型的Δvma4的温度敏感生长一致,液泡膜囊泡在ATP水解和质子转运之间表现出温度敏感偶联。这些结果表明,E1同工型对于顶体酸化所涉及的能量偶联至关重要。

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