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鼠伤寒沙门氏菌的耐酸性反应可提供针对有机酸的保护作用。

The acid tolerance response of Salmonella typhimurium provides protection against organic acids.

作者信息

Baik H S, Bearson S, Dunbar S, Foster J W

机构信息

Department of Microbiology and Immunology, University of South Alabama, College of Medicine, Mobile 36688, USA.

出版信息

Microbiology (Reading). 1996 Nov;142 ( Pt 11):3195-200. doi: 10.1099/13500872-142-11-3195.

Abstract

Salmonella typhimurium encounters a variety of acid stress situations during pathogenesis and in the natural environment. These include the extreme low pH encountered in the stomach and a less acidic intestinal environment containing large amounts of organic weak acids (volatile fatty acids). The acid tolerance response (ATR) is a complex defence system that can minimize the lethal effects of extreme low pH (pH3). The data presented illustrate that the ATR can also defend against weak acids such as butyric, acetic or propionic acids. Although an acid shock of pH 4.4 induced the ATR, growth in subinhibitory concentrations of weak acids did not. Various mutations shown to affect tolerance to extreme acid conditions (pH 3) were tested for their effects on tolerance to weak acids. An rpoS mutant lacking the alternative sigma factor sigma s failed to protect cells against weak acids as well as extreme acid pH. The fur (ferric uptake regulator) and atp (Mg(2+)-dependent ATPase) mutants defective in extreme acid tolerance showed no defects in their tolerance to weak acids. Curiously, the atbR mutant that exhibits increased tolerance to extreme acid pH proved sensitive to weak acids. Several insertions that rendered cells sensitive to organic acids were isolated, all of which proved to be linked to the rpoS locus.

摘要

鼠伤寒沙门氏菌在致病过程及自然环境中会遇到多种酸性应激情况。这些情况包括在胃中遇到的极低pH值以及含有大量有机弱酸(挥发性脂肪酸)的酸性较弱的肠道环境。酸耐受反应(ATR)是一种复杂的防御系统,可将极低pH值(pH3)的致死效应降至最低。所呈现的数据表明,ATR还能抵御丁酸、乙酸或丙酸等弱酸。尽管pH 4.4的酸激诱导了ATR,但在亚抑制浓度的弱酸中生长并未诱导。测试了各种已显示影响对极端酸性条件(pH 3)耐受性的突变对弱酸耐受性的影响。缺乏替代西格玛因子西格玛s的rpoS突变体无法保护细胞抵御弱酸以及极端酸性pH值。在极端酸耐受性方面有缺陷的fur(铁摄取调节因子)和atp(Mg(2 +)依赖性ATP酶)突变体在对弱酸的耐受性方面没有缺陷。奇怪的是,对极端酸性pH值表现出耐受性增加的atbR突变体对弱酸敏感。分离出了几种使细胞对有机酸敏感的插入突变,所有这些突变都被证明与rpoS基因座相关。

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