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Genomic and Genetic Characterization of the Bile Stress Response of Probiotic Lactobacillus reuteri ATCC 55730▿ †

机译:益生菌罗伊氏乳杆菌ATCC 55730的胆汁应激反应的基因组学和遗传学特征

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摘要

Probiotic bacteria encounter various stresses after ingestion by the host, including exposure to the low pH in the stomach and bile in the small intestine. The probiotic microorganism Lactobacillus reuteri ATCC 55730 has previously been shown to survive in the human small intestine. To address how L. reuteri can resist bile stress, we performed microarray experiments to determine gene expression changes that occur when the organism is exposed to physiological concentrations of bile. A wide variety of genes that displayed differential expression in the presence of bile indicated that the cells were dealing with several types of stress, including cell envelope stress, protein denaturation, and DNA damage. Mutations in three genes were found to decrease the strain's ability to survive bile exposure: lr1864, a Clp chaperone; lr0085, a gene of unknown function; and lr1516, a putative esterase. Mutations in two genes that form an operon, lr1584 (a multidrug resistance transporter in the major facilitator superfamily) and lr1582 (unknown function), were found to impair the strain's ability to restart growth in the presence of bile. This study provides insight into the possible mechanisms that L. reuteri ATCC 55730 may use to survive and grow in the presence of bile in the small intestine.
机译:益生菌被宿主摄入后会遇到各种压力,包括暴露于胃中的低pH值和小肠中的胆汁。益生菌微生物路氏乳杆菌ATCC 55730先前已证明可以在人的小肠中存活。为了解决罗伊氏乳杆菌如何抵抗胆汁压力,我们进行了微阵列实验,以确定当生物体暴露于生理浓度的胆汁时发生的基因表达变化。在胆汁中存在差异表达的多种基因表明,细胞正在处理几种类型的应激,包括细胞包膜应激,蛋白质变性和DNA损伤。发现三个基因的突变会降低菌株抵抗胆汁暴露的能力:lr1864,一种Clp分子伴侣; lr0085,功能未知的基因;和lr1516,推定的酯酶。发现形成操纵子的两个基因突变,即lr1584(主要促进者超家族中的多药耐药转运蛋白)和lr1582(未知功能),削弱了该菌株在胆汁中重新开始生长的能力。这项研究为罗伊氏乳杆菌ATCC 55730在小肠中存在胆汁时可能生存和生长的可能机制提供了见识。

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