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乳酸菌的蛋白水解系统。

The proteolytic systems of lactic acid bacteria.

作者信息

Kunji E R, Mierau I, Hagting A, Poolman B, Konings W N

机构信息

Department of Microbiology, University of Groningen, Haren, The Netherlands.

出版信息

Antonie Van Leeuwenhoek. 1996 Oct;70(2-4):187-221. doi: 10.1007/BF00395933.

Abstract

Proteolysis in dairy lactic acid bacteria has been studied in great detail by genetic, biochemical and ultrastructural methods. From these studies the picture emerges that the proteolytic systems of lactococci and lactobacilli are remarkably similar in their components and mode of action. The proteolytic system consists of an extracellularly located serine-proteinase, transport systems specific for di-tripeptides and oligopeptides (> 3 residues), and a multitude of intracellular peptidases. This review describes the properties and regulation of individual components as well as studies that have led to identification of their cellular localization. Targeted mutational techniques developed in recent years have made it possible to investigate the role of individual and combinations of enzymes in vivo. Based on these results as well as in vitro studies of the enzymes and transporters, a model for the proteolytic pathway is proposed. The main features are: (i) proteinases have a broad specificity and are capable of releasing a large number of different oligopeptides, of which a large fraction falls in the range of 4 to 8 amino acid residues; (ii) oligopeptide transport is the main route for nitrogen entry into the cell; (iii) all peptidases are located intracellularly and concerted action of peptidases is required for complete degradation of accumulated peptides.

摘要

通过遗传学、生物化学和超微结构方法,人们对乳用乳酸菌中的蛋白水解作用进行了深入研究。从这些研究中可以看出,乳球菌和乳杆菌的蛋白水解系统在其组成和作用方式上非常相似。蛋白水解系统由位于细胞外的丝氨酸蛋白酶、对二肽和寡肽(>3个残基)具有特异性的转运系统以及多种细胞内肽酶组成。这篇综述描述了各个组分的特性和调控,以及导致确定其细胞定位的研究。近年来开发的靶向突变技术使得在体内研究单个酶和酶组合的作用成为可能。基于这些结果以及对酶和转运体的体外研究,提出了一个蛋白水解途径模型。其主要特点是:(i)蛋白酶具有广泛的特异性,能够释放大量不同的寡肽,其中很大一部分在4至8个氨基酸残基范围内;(ii)寡肽转运是氮进入细胞的主要途径;(iii)所有肽酶都位于细胞内,积累的肽完全降解需要肽酶的协同作用。

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