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液泡H⁺ATP酶在大鼠和人类男性生殖道中的分布。

Distribution of the vacuolar H+ atpase along the rat and human male reproductive tract.

作者信息

Herak-Kramberger C M, Breton S, Brown D, Kraus O, Sabolic I

机构信息

Unit of Molecular Toxicology, Institute for Medical Research and Occupational Health, 10001 Zagreb, Croatia.

出版信息

Biol Reprod. 2001 Jun;64(6):1699-707. doi: 10.1095/biolreprod64.6.1699.

Abstract

Luminal acidification in parts of the male reproductive tract generates an appropriate pH environment in which spermatozoa mature and are stored. The cellular mechanisms of proton (H+) secretion in the epididymis and the proximal vas deferens involve the activity of an apical vacuolar H+ ATPase in specialized cell types, as well as an apical Na+/H+ exchanger in some tubule segments. In this study we used Western blotting and immunocytochemistry to localize the H+ ATPase in various segments of the male reproductive tract in rat and man as a first step toward a more complete understanding of luminal acidification processes in this complex system of tissues. Immunoblotting of isolated total cell membranes indicated a variable amount of H+ ATPase in various segments of the rat reproductive tract. In addition to its known expression in distinct cell types in the epididymis and vas deferens, the H+ ATPase was also localized at the apical pole and in the cytoplasm of epithelial cells in the efferent duct (nonciliated cells), the ampulla of the vas deferens and the ventral prostate (scattered individual cells), the dorsal and lateral prostate, the ampullary gland, the coagulating gland, and all epithelial cells of the prostatic and penile urethra. Both apical and basolateral localization of the protein were found in epithelial cells of the prostatic ducts in the lateral prostate and in periurethral tissue. Only cytoplasmic, mostly perinuclear localization of the H+ ATPase was found in all epithelial cells of the seminal vesicles and in most cells of the ventral prostate and coagulating gland. No staining was detected in the seminiferous tubules, rete testis, and bulbourethral gland. In human tissue, H+ ATPase-rich cells were detected in the epididymis, prostate, and prostatic urethra. We conclude that the vacuolar H+ ATPase is highly expressed in epithelial cells of most segments of the male reproductive tract in rat and man, where it may be involved in H+ secretion and/or intracellular processing of the material endocytosed from the luminal fluid or destined to be secreted by exocytosis.

摘要

雄性生殖道部分区域的管腔酸化会产生一个适宜的pH环境,精子在此环境中成熟并储存。附睾和输精管近端质子(H⁺)分泌的细胞机制涉及特定细胞类型中顶端液泡H⁺ ATP酶的活性,以及某些肾小管节段中的顶端Na⁺/H⁺交换体。在本研究中,我们使用蛋白质免疫印迹法和免疫细胞化学方法来定位大鼠和人类雄性生殖道各段中的H⁺ ATP酶,这是朝着更全面了解这个复杂组织系统中的管腔酸化过程迈出的第一步。对分离的全细胞膜进行免疫印迹分析表明,大鼠生殖道各段中H⁺ ATP酶的含量各不相同。除了已知在附睾和输精管的不同细胞类型中表达外,H⁺ ATP酶还定位于输出小管(非纤毛细胞)、输精管壶腹和腹侧前列腺(散在的单个细胞)、背侧和外侧前列腺、壶腹腺、凝固腺以及前列腺和阴茎尿道的所有上皮细胞的顶端极和细胞质中。在外侧前列腺的前列腺导管上皮细胞和尿道周围组织中发现了该蛋白的顶端和基底外侧定位。在精囊的所有上皮细胞以及腹侧前列腺和凝固腺的大多数细胞中,仅发现H⁺ ATP酶主要位于核周的细胞质定位。在生精小管、睾丸网和尿道球腺中未检测到染色。在人体组织中,在附睾、前列腺和前列腺尿道中检测到富含H⁺ ATP酶的细胞。我们得出结论,液泡H⁺ ATP酶在大鼠和人类雄性生殖道大多数节段的上皮细胞中高度表达,它可能参与H⁺分泌和/或对从管腔液中内吞或注定通过胞吐作用分泌的物质进行细胞内加工。

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