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Global Analysis of Escherichia coli Gene Expression during the Acetate-Induced Acid Tolerance Response

机译:乙酸诱导的酸耐受反应过程中大肠杆菌基因表达的全局分析

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摘要

The ability of Escherichia coli to survive at low pH is strongly affected by environmental factors, such as composition of the growth medium and growth phase. Exposure to short-chain fatty acids, such as acetate, proprionate, and butyrate, at neutral or nearly neutral pH has also been shown to increase acid survival of E. coli and Salmonella enterica serovar Typhimurium. To investigate the basis for acetate-induced acid tolerance in E. coli O157:H7, genes whose expression was altered by exposure to acetate were identified using gene arrays. The expression of 60 genes was reduced by at least twofold; of these, 48 encode components of the transcription-translation machinery. Expression of 26 genes increased twofold or greater following treatment with acetate. This included six genes whose products are known to be important for survival at low pH. Five of these genes, as well as six other acetate-induced genes, are members of the E. coli RpoS regulon. RpoS, the stress sigma factor, is known to be required for acid tolerance induced by growth at nonlethal low pH or by entry into stationary phase. Disruption of the rpoS gene by a transposon insertion mutation also prevented acetate-induced acid tolerance. However, induction of RpoS expression did not appear to be sufficient to activate the acid tolerance response. Treatment with either NaCl or sodium acetate (pH 7.0) increased expression of an rpoS::lacZ fusion protein, but only treatment with acetate increased acid survival.
机译:大肠杆菌在低pH条件下生存的能力受到环境因素的强烈影响,例如生长培养基的组成和生长阶段。在中性或接近中性的pH值下暴露于短链脂肪酸(例如乙酸盐,丙酸和丁酸)也可提高大肠杆菌和肠沙门氏菌血清鼠伤寒的酸存活率。为了研究大肠杆菌O157:H7中乙酸盐诱导的耐酸性的基础,使用基因阵列鉴定了其表达因暴露于乙酸盐而改变的基因。 60个基因的表达减少了至少两倍;其中48个编码转录翻译机制的成分。用醋酸盐处理后,26个基因的表达增加了两倍或更多。其中包括六个基因,这些基因的产物对于在低pH下的存活至关重要。这些基因中的五个以及其他六个由乙酸盐诱导的基因是大肠杆菌RpoS调节子的成员。 RpoS(应力西格玛因子)已知是在非致命性低pH值下生长或进入固定相诱导的耐酸性所必需的。转座子插入突变对rpoS基因的破坏也阻止了乙酸盐诱导的耐酸性。但是,RpoS表达的诱导似乎不足以激活耐酸反应。用NaCl或乙酸钠(pH 7.0)处理可增加rpoS :: lacZ融合蛋白的表达,但仅使用乙酸盐处理可增加酸的存活率。

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