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大鼠精子在附睾成熟过程中前顶体蛋白酶-顶体蛋白酶系统的生化改变。

Biochemical alterations in the proacrosin-acrosin system during epididymal maturation of the rat spermatozoa.

作者信息

Nagdas S K, Skudlarek M D, Orgebin-Crist M C, Tulsiani D R

机构信息

Center for Reproductive Biology Research, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-2633.

出版信息

J Androl. 1992 Jan-Feb;13(1):36-43.

PMID:1551805
Abstract

Acrosin, an acrosomal serine protease, is believed to have a role in fertilization. The enzyme is synthesized in an enzymatically inactive precursor form, proacrosin, and is processed to enzymatically active form(s). In the studies presented here, maturation-associated changes in the proacrosin-acrosin system of rat spermatozoa are reported. Acid-solubilized components of spermatozoa from caput, corpus, and cauda epididymidis were resolved on gelatin-sodium dodecyl sulfatepolyacrylamide gel electrophoresis (SDS-PAGE) and the proteolytic bands visualized by enzymography. These studies reveal the presence of one form (52 kDa), two forms (52 and 41 kDa), and four forms (52, 41, 34, and 31 kDa) in the spermatozoa from caput, corpus, and cauda, respectively. The findings suggest that the enzymatically inactive high molecular weight component (proacrosin) present in the caput spermatozoa is partially converted to the low molecular weight components (acrosin) during epididymal transit. The sensitivity of these molecular forms to an inhibitor of acrosin, p-nitrophenyl p'-guanidino benzoate (NPGB), and the fact that all four forms cross-reacted with the antibody against guinea pig testis proacrosin, suggest that these molecular forms are proacrosin-acrosin components. To understand the mechanism of the changes in molecular forms, spermatozoa from caput, corpus, and cauda regions were subjected to in vitro activation, and the acid-solubilized components resolved on gelatin-SDS-polyacrylamide gel. A smaller component of 34 kDa was generated from both the caput and corpus spermatozoa. No changes in the molecular form(s) of cauda spermatozoa were observed, even after in vitro activation for 4 hours. Inclusion of NPGB during in vitro activation blocked generation of the new molecular form from the caput spermatozoa. These studies indicate that intra-acrosomal events during epididymal transit may be important in the production of functionally mature spermatozoa.

摘要

顶体素是一种顶体丝氨酸蛋白酶,被认为在受精过程中发挥作用。该酶以无酶活性的前体形式即前顶体素合成,并被加工成有酶活性的形式。在此呈现的研究中,报告了大鼠精子前顶体素-顶体素系统中与成熟相关的变化。来自附睾头、体、尾的精子的酸溶性成分在明胶-十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)上进行分离,蛋白水解条带通过酶谱法显现。这些研究分别揭示了附睾头、体、尾精子中存在一种形式(52 kDa)、两种形式(52和41 kDa)以及四种形式(52、41、34和31 kDa)。这些发现表明,附睾头精子中存在的无酶活性的高分子量成分(前顶体素)在附睾转运过程中部分转化为低分子量成分(顶体素)。这些分子形式对顶体素抑制剂对硝基苯基对'-胍基苯甲酸酯(NPGB)的敏感性,以及所有四种形式都与抗豚鼠睾丸前顶体素抗体发生交叉反应这一事实,表明这些分子形式是前顶体素-顶体素成分。为了理解分子形式变化的机制,对来自附睾头、体、尾区域的精子进行体外激活,并将酸溶性成分在明胶-SDS-聚丙烯酰胺凝胶上分离。来自附睾头和体精子均产生了一个较小的34 kDa成分。即使在体外激活4小时后,附睾尾精子的分子形式也未观察到变化。在体外激活过程中加入NPGB可阻止附睾头精子产生新的分子形式。这些研究表明,附睾转运过程中的顶体内事件可能在功能成熟精子的产生中起重要作用。

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