首页> 外文OA文献 >vttRA and vttRB Encode ToxR Family Proteins That Mediate Bile-Induced Expression of Type Three Secretion System Genes in a Non-O1/Non-O139 Vibrio cholerae Strain▿
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vttRA and vttRB Encode ToxR Family Proteins That Mediate Bile-Induced Expression of Type Three Secretion System Genes in a Non-O1/Non-O139 Vibrio cholerae Strain▿

机译:vttRA和vttRB编码在非O1 / Non-O139霍乱弧菌菌株中介导胆汁诱导的三型分泌系统基因表达的ToxR家族蛋白

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摘要

Strain AM-19226 is a pathogenic non-O1/non-O139 serogroup Vibrio cholerae strain that does not encode the toxin-coregulated pilus or cholera toxin but instead causes disease using a type three secretion system (T3SS). Two genes within the T3SS pathogenicity island, herein named vttRA (locus tag A33_1664) and vttRB (locus tag A33_1675), are predicted to encode proteins that show similarity to the transcriptional regulator ToxR, which is found in all strains of V. cholerae. Strains with a deletion of vttRA or vttRB showed attenuated colonization in vivo, indicating that the T3SS-encoded regulatory proteins play a role in virulence. lacZ transcriptional reporter fusions to intergenic regions upstream of genes encoding the T3SS structural components identified growth in the presence of bile as a condition that modulates gene expression. Under this condition, VttRA and VttRB were necessary for maximal gene expression. In contrast, growth in bile did not substantially alter the expression of a reporter fusion to the vopF gene, which encodes an effector protein. Increased vttRB reporter fusion activity was observed in a ΔvttRB strain background, suggesting that VttRB may regulate its own expression. The collective results are consistent with the hypothesis that T3SS-encoded regulatory proteins are essential for pathogenesis and control the expression of selected T3SS genes.
机译:菌株AM-19226是一种致病性非O1 /非O139血清型霍乱弧菌菌株,它不编码毒素复合菌毛或霍乱毒素,而是使用三型分泌系统(T3SS)引起疾病。预测T3SS致病岛中的两个基因(此处称为vttRA(基因座标签A33_1664)和vttRB(基因座标签A33_1675))编码的蛋白显示与在霍乱弧菌所有菌株中发现的转录调节因子ToxR相似。带有vttRA或vttRB缺失的菌株在体内定植减弱,表明T3SS编码的调节蛋白在毒力中起作用。 lacZ转录报告基因融合到编码T3SS结构成分的基因上游的基因间区域,在存在胆汁的情况下确定生长是调节基因表达的条件。在这种条件下,VttRA和VttRB是最大基因表达所必需的。相反,胆汁的生长并没有实质性地改变报告子融合到编码效应蛋白的vopF基因的表达。在ΔvttRB菌株背景中观察到增加的vttRB报告基因融合活性,表明VttRB可能调节其自身表达。总体结果与以下假设一致:T3SS编码的调节蛋白对于发病机制和控制所选T3SS基因的表达至关重要。

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