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Comparative Analysis of Two Classes of Quorum-Sensing Signaling Systems That Control Production of Extracellular Proteins and Secondary Metabolites in Erwinia carotovora Subspecies

机译:两种控制群体感应信号的信号传导系统,它们控制胡萝卜软腐欧文氏菌亚种的细胞外蛋白和次生代谢产物的产生

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摘要

In Erwinia carotovora subspecies, N-acyl homoserine lactone (AHL) controls the expression of various traits, including extracellular enzyme/protein production and pathogenicity. We report here that E. carotovora subspecies possess two classes of quorum-sensing signaling systems defined by the nature of the major AHL analog produced as well as structural and functional characteristics of AHL synthase (AhlI) and AHL receptor (ExpR). Class I strains represented by E. carotovora subsp. atroseptica strain Eca12 and E. carotovora subsp. carotovora strains EC153 and SCC3193 produce 3-oxo-C8-HL (N-3-oxooctanoyl-l-homoserine lactone) as the major AHL analog as well as low but detectable levels of 3-oxo-C6-HL (N-3-oxohexanoyl-l-homoserine lactone). In contrast, the members of class II (i.e., E. carotovora subsp. betavasculorum strain Ecb168 and E. carotovora subsp. carotovora strains Ecc71 and SCRI193) produce 3-oxo-C6-HL as the major analog. ExpR species of both classes activate rsmA (Rsm, repressor of secondary metabolites) transcription and bind rsmA DNA. Gel mobility shift assays with maltose-binding protein (MBP)-ExpR71 and MBP-ExpR153 fusion proteins show that both bind a 20-mer sequence present in rsmA. The two ExpR functions (i.e., expR-mediated activation of rsmA expression and ExpR binding with rsmA DNA) are inhibited by AHL. The AHL effects are remarkably specific in that expR effect of EC153, a strain belonging to class I, is counteracted by 3-oxo-C8-HL but not by 3-oxo-C6-HL. Conversely, the expR effect of Ecc71, a strain belonging to class II, is neutralized by 3-oxo-C6-HL but not by 3-oxo-C8-HL. The AHL responses correlated with expR-mediated inhibition of exoprotein and secondary metabolite production.
机译:在胡萝卜欧文氏亚种中,N-酰基高丝氨酸内酯(AHL)控制着各种特征的表达,包括细胞外酶/蛋白质的产生和致病性。我们在这里报告说,carotovora亚种拥有两类群体感应信号系统,该系统由产生的主要AHL类似物的性质以及AHL合酶(AhlI)和AHL受体(ExpR)的结构和功能特性定义。以carotovora亚种为代表的I类菌株。 atroseptica菌株Eca12和Carotovora亚种。胡萝卜菌EC153和SCC3193菌株产生3-氧化-C8-HL(N-3-氧代辛酰基-1-高丝氨酸内酯)作为主要的AHL类似物以及低水平但可检出的3-氧代-C6-HL(N-3-氧代己酰基-1-高丝氨酸内酯)。相比之下,II类成员(即,Carotovora亚种βvasculorum菌株Ecb168和E.carotovora亚种carotovora菌株Ecc71和SCRI193)产生3-氧代-C6-HL作为主要类似物。两种类型的ExpR物种均激活rsmA(Rsm,次级代谢物的阻遏物)转录并结合rsmA DNA。麦芽糖结合蛋白(MBP)-ExpR71和MBP-ExpR153融合蛋白的凝胶迁移率迁移分析表明,两者均结合了存在于rsmA中的20-mer序列。 AHL抑制了两种ExpR功能(即,expR介导的rsmA表达的激活和与rsmA DNA结合的ExpR)。 AHL的作用非常特别,因为EC153(属于I类)的expR作用被3-oxo-C8-HL抵消,但未被3-oxo-C6-HL抵消。相反,属于II类的菌株Ecc71的expR作用被3-oxo-C6-HL中和,但未被3-oxo-C8-HL中和。 AHL反应与expR介导的胞外蛋白抑制和次生代谢产物的产生有关。

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