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首页> 外文期刊>Molecular Microbiology >Dual regulation of genes involved in acetoin biosynthesis and motility/biofilm formation by the virulence activator AphA and the acetate-responsive LysR-type regulator AlsR in Vibrio cholerae
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Dual regulation of genes involved in acetoin biosynthesis and motility/biofilm formation by the virulence activator AphA and the acetate-responsive LysR-type regulator AlsR in Vibrio cholerae

机译:霍乱弧菌中毒力激活剂AphA和乙酸盐反应性LysR型调节剂AlsR对乙酰乙酰胺生物合成和运动/生物膜形成相关基因的双重调控

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摘要

AphA is a quorum sensing-regulated activator that initiates the virulence cascade in Vibrio cholerae by cooperating with the LysR-type regulator AphB at the tcpPH promoter on the Vibrio pathogenicity island (VPI). To identify the ancestral chromosomal genes in V. cholerae regulated by AphA, we carried out a microarray analysis and show here that AphA influences the expression of 15 genes not associated with the VPI. One set of genes strongly repressed by AphA is involved in the biosynthesis of acetoin, a product synthesized by a variety of bacteria that plays a role in preventing intracellular acidification and which is essential for the viability of V. cholerae in the presence of glucose. Also present in this operon are two putative signal transduction proteins with EAL and GGDEF domains that oppositely influence motility and biofilm formation. Gel mobility shift assays show that AphA binds to a site upstream of the first gene in the acetoin operon. Transcriptional lacZ fusions indicate that at low cell density AphA represses the expression of the acetoin genes up to 15-fold. Voges Proskauer tests confirm that deletion of AphA increases the production of acetoin under non-inducing conditions and also that the LysR-type regulator AlsR divergently transcribed from the operon is required for its production. This is the first report of a specific repressor protein involved in the transcriptional control of acetoin production as well as the co-regulation of these genes with those that influence motility and biofilm formation. The results here provide a model for the dual regulation of these processes by acetate and quorum sensing through AlsR and AphA.
机译:AphA是一种群体感应调节激活剂,通过与弧菌病原性岛(VPI)上的tcpPH启动子协同LysR型调节剂AphB来启动霍乱弧菌的毒力级联反应。为了鉴定受AphA调节的霍乱弧菌的祖先染色体基因,我们进行了微阵列分析,并在这里显示AphA影响15个与VPI不相关的基因的表达。一组被AphA强烈抑制的基因参与了乙缩醛的生物合成,乙缩醛是由多种细菌合成的产物,在防止细胞内酸化中发挥作用,并且对于葡萄糖存在下霍乱弧菌的生存能力至关重要。该操纵子中还存在两个推定的信号转导蛋白,它们具有EAL和GGDEF结构域,它们相反地影响运动性和生物膜形成。凝胶迁移率变动分析表明,AphA结合于乙酰化操纵子中第一个基因的上游位点。转录lacZ融合表明,在低细胞密度下,AphA可以将乙酰素基因的表达抑制多达15倍。 Voges Proskauer测试证实,在非诱导条件下,AphA的缺失会增加乙酰辅酶的产生,并且从操纵子中分叉转录的LysR型调节子AlsR是其生产所必需的。这是关于特定阻遏蛋白的第一个报道,该蛋白参与乙酰丙酮生产的转录控制以及这些基因与影响运动性和生物膜形成的基因的共调控。此处的结果提供了通过乙酸盐和通过AlsR和AphA进行群体感应来双重调节这些过程的模型。

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