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胡萝卜软腐欧文氏菌胡萝卜软腐亚种Ecc71菌株的己糖胺酶A(hexA)负向调控RpoS和rsmB RNA的产生,RpoS和rsmB RNA是细胞外蛋白、植物毒力及群体感应信号N-(3-氧代己酰基)-L-高丝氨酸内酯的全局调控因子。

hexA of Erwinia carotovora ssp. carotovora strain Ecc71 negatively regulates production of RpoS and rsmB RNA, a global regulator of extracellular proteins, plant virulence and the quorum-sensing signal, N-(3-oxohexanoyl)-L-homoserine lactone.

作者信息

Mukherjee A, Cui Y, Ma W, Liu Y, Chatterjee A K

机构信息

Department of Plant Microbiology and Pathology, University of Missouri, Columbia 65211, USA.

出版信息

Environ Microbiol. 2000 Apr;2(2):203-15. doi: 10.1046/j.1462-2920.2000.00093.x.

Abstract

The soft-rotting bacterium, Erwinia carotovora ssp. carotovora (E. c. carotovora), produces an array of extracellular enzymes (= exoenzymes), including pectate lyase (Pel), polygalacturonase (Peh), cellulase (Cel) and protease (Prt), as well as HarpinEcc, the elicitor of hypersensitive reaction (HR). The production of these exoenzymes and HarpinEcc responds to plant products and the quorum-sensing signal [N-(3-oxohexanoyl)-L-homoserine lactone; OHL] and is subject to both transcriptional and post-transcriptional regulation. hexA of E. c. carotovora strain Ecc71 (hereafter hexA71), like that of another E. c. carotovora strain, negatively controls the production of exoenzymes, OHL and virulence in E. c. carotovora strain Ecc71. In addition to exoenzymes, HexA71 negatively regulates the expression of hrpNEcc, the structural gene for HarpinEcc. Exoenzyme overproduction is abolished by OHL deficiency in a HexA- and Ohll- double mutant, indicating that HexA and OHL are components of a common regulatory pathway controlling exoenzyme production. HexA71 negatively affects RpoS, as the levels of this alternative sigma factor are higher in the HexA- mutant than in the HexA+ strain. However, a HexA- and RpoS double mutant produces higher levels of exoenzymes and transcripts of pel-1, peh-1 and celVgenes than the HexA- and RpoS+ parent. Thus, the elevated levels of RpoS protein in the HexA- mutant do not account for exoenzyme overproduction. The following evidence associates for the first time the phenotypic changes in the HexA mutant to overproduction of rsmB RNA, a global regulator of exoenzymes, HarpinEcc, OHL and secondary metabolites. Analyses of rsmB transcripts and expression of an rsmB-lacZoperon fusion in E. c. carotovora strain Ecc71 revealed that HexA71 negatively regulates transcription of rsmB. Multiple copies of hexA71+ DNA suppress various phenotypes, including exoenzyme production in E. c. carotovora strain Ecc71, and concomitantly inhibit the production of rsmB, pel-1, peh-1, celV and hrpNEcc transcripts. Multiple copies of rsmB+ DNA, on the other hand, stimulate exoenzyme production by relieving the negative effects of a chromosomal copy of hexA+. The occurrence of hexA homologues and the negative effect of the dosage of hexA71 DNA on rsmB transcripts were also detected in other E. c. carotovora strains as well as Erwinia carotovora atroseptica and Erwinia carotovora betavasculorum. Extrapolating from the findings with LrhA, the Escherichia coli homologue of HexA, and the presence of sprE homologues in E. carotovora subspecies, we propose that HexA71 controls several regulatory pathways in E. carotovora including rsmB transcription and the production of SprEEcc which, in turn, affects RpoS levels. A model is presented that integrates the findings presented here and our current knowledge of the major regulatory network that controls exoprotein production in soft-rotting Erwinia carotovora subspecies.

摘要

软腐细菌胡萝卜软腐欧文氏菌胡萝卜软腐亚种(E. c. carotovora)可产生一系列胞外酶(即外切酶),包括果胶酸裂解酶(Pel)、多聚半乳糖醛酸酶(Peh)、纤维素酶(Cel)和蛋白酶(Prt),以及过敏反应激发子(HR)HarpinEcc。这些外切酶和HarpinEcc的产生对植物产物和群体感应信号[N-(3-氧代己酰基)-L-高丝氨酸内酯;OHL]有响应,并受到转录和转录后调控。E. c. carotovora菌株Ecc71(以下简称hexA71)的hexA,与另一E. c. carotovora菌株的hexA一样,对E. c. carotovora菌株Ecc71中外切酶、OHL的产生以及毒力具有负调控作用。除了外切酶,HexA71还负调控HarpinEcc的结构基因hrpNEcc的表达。在HexA和Ohll双突变体中,OHL缺陷消除了外切酶的过量产生,这表明HexA和OHL是控制外切酶产生的共同调控途径的组成部分。HexA71对RpoS有负面影响,因为在HexA突变体中这种替代σ因子的水平高于HexA+菌株。然而,HexA和RpoS双突变体产生的外切酶以及pel-1、peh-1和celV基因的转录本水平高于HexA和RpoS+亲本。因此,HexA突变体中RpoS蛋白水平的升高并不能解释外切酶的过量产生。以下证据首次将HexA突变体中的表型变化与rsmB RNA的过量产生联系起来,rsmB RNA是外切酶、HarpinEcc、OHL和次级代谢产物的全局调节因子。对E. c. carotovora菌株Ecc71中rsmB转录本和rsmB-lacZ操纵子融合表达的分析表明,HexA71负调控rsmB的转录。hexA71+ DNA的多个拷贝抑制了多种表型,包括E. c. carotovora菌株Ecc71中外切酶的产生,并同时抑制rsmB、pel-1、peh-1、celV和hrpNEcc转录本的产生。另一方面,rsmB+ DNA的多个拷贝通过减轻hexA+染色体拷贝的负面影响来刺激外切酶的产生。在其他E. c. carotovora菌株以及黑胫病欧文氏菌和甜菜血管坏死欧文氏菌中也检测到了hexA同源物的存在以及hexA71 DNA剂量对rsmB转录本的负面影响。根据与HexA的大肠杆菌同源物LrhA的研究结果以及胡萝卜软腐欧文氏菌亚种中sprE同源物的存在进行推断,我们提出HexA71控制胡萝卜软腐欧文氏菌中的多个调控途径,包括rsmB转录和SprEEcc的产生,进而影响RpoS水平。本文提出了一个模型,该模型整合了此处呈现的研究结果以及我们目前对控制软腐胡萝卜软腐欧文氏菌亚种中胞外蛋白产生的主要调控网络的了解。

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