首页> 外文OA文献 >Capsular polysaccharide biosynthesis and pathogenicity in Erwinia stewartii require induction by an N-acylhomoserine lactone autoinducer.
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Capsular polysaccharide biosynthesis and pathogenicity in Erwinia stewartii require induction by an N-acylhomoserine lactone autoinducer.

机译:斯氏欧文氏菌中的荚膜多糖生物合成和致病性需要由N-酰基高丝氨酸内酯自动诱导剂诱导。

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摘要

N-Acylhomoserine lactone (acyl-HSL)-mediated gene expression, also called autoinduction, is conserved among diverse gram-negative bacteria. In the paradigm Vibrio fischeri system, bioluminescence is autoinducible, and the lux operon requires the transcriptional activator LuxR and the acyl-HSL autoinducer for expression. The production of the acyl-HSL signal molecule is conferred by the luxI gene, and luxR encodes the transcriptional regulator. We show here that Erwinia stewartii, the etiological agent of Stewart's wilt of sweet corn, synthesizes an acyl-HSL. Mass spectral analysis identified the signal molecule as N-(-3-oxohexanoyl)-L-homoserine lactone, which is identical to the V. fischeri autoinducer. We have cloned and sequenced the gene that confers acyl-HSL biosynthesis, called esaI, and the linked gene, esaR, that encodes a gene regulator. The two genes are convergently transcribed and show an unusual overlap of 31 bp at their 3' ends. Sequence analysis indicates that EsaI and EsaR are homologs of LuxI and LuxR, respectively. EsaR can repress its own expression but seems not to regulate the expression of esaI. The untranslated 5' region of esaR contains an inverted repeat with similarity to the lux box-like elements located in the promoter regions of other gene systems regulated by autoinduction. However, unlike the other systems, in which the inverted repeats are located upstream of the -35 promoter elements, the esaR-associated repeat overlaps a putative -10 element. We mutagenized the esaI gene in E. stewartii by gene replacement. The mutant no longer produced detectable levels of the acyl-HSL signal, leading to a concomitant loss of extracellular polysaccharide capsule production and pathogenicity. Both phenotypes were restored by complementation with esal or by exogenous addition of the acyl-HSL.
机译:N-酰基高丝氨酸内酯(酰基-HSL)介导的基因表达,也称为自动诱导,在各种革兰氏阴性细菌中均是保守的。在范氏弧菌系统中,生物发光是可自诱导的,而lux操纵子需要转录激活因子LuxR和酰基HSL自诱导子才能表达。酰基HSL信号分子的产生是由luxI基因赋予的,而luxR则编码转录调节因子。我们在这里显示Stewart甜玉米枯萎病的病原体Erwinia stewartii合成了酰基HSL。质谱分析鉴定该信号分子为N-(-3-氧代己酰基)-L-高丝氨酸内酯,其与费氏弧菌自动诱导剂相同。我们已经克隆并测序了赋予酰基-HSL生物合成作用的基因esaI,以及连接的基因esaR,该基因编码基因调控子。这两个基因被会聚转录,并在其3'末端显示出31 bp的异常重叠。序列分析表明EsaI和EsaR分别是LuxI和LuxR的同源物。 EsaR可以抑制其自身的表达,但似乎不能调节esaI的表达。 esaR的未翻译的5'区域包含一个反向重复,其重复序列与位于其他由自动诱导调控的基因系统的启动子区域中的lux盒样元件相似。但是,与其他系统不同的是,反向重复序列位于-35启动子元件的上游,与esaR相关的重复序列与推定的-10元件重叠。我们通过基因置换诱变了Stewartii中的esaI基因。该突变体不再产生可检测水平的酰基-HSL信号,从而导致细胞外多糖胶囊产生和致病性的伴随损失。通过与esal互补或通过外源添加酰基-HSL来恢复两种表型。

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