首页> 美国卫生研究院文献>The Journal of Biological Chemistry >DsbA Plays a Critical and Multifaceted Role in the Production of Secreted Virulence Factors by the Phytopathogen Erwinia carotovora subsp. atroseptica
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DsbA Plays a Critical and Multifaceted Role in the Production of Secreted Virulence Factors by the Phytopathogen Erwinia carotovora subsp. atroseptica

机译:DsbA在分泌物的生产中起着至关重要的作用 由植物病原菌欧文氏菌亚种的毒力因子。 杀菌剂

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摘要

Erwinia carotovora subsp. atroseptica is an enterobacterial phytopathogen causing economically significant soft rot disease. Pathogenesis is mediated by multiple secreted virulence factors, many of which are secreted by the type II (Out) secretion system. DsbA catalyzes the introduction of disulfide bonds into periplasmic and secreted proteins. In this study, the extracellular proteome (secretome) of wild type E. carotovora subsp. atroseptica SCRI1043, and dsbA and out mutants, was analyzed by spectral counting mass spectrometry. This revealed that dsbA inactivation had a huge impact on the secretome and identified diverse DsbA- and Out-dependent secreted proteins, representing known, predicted, and novel candidate virulence factors. Further characterization of the dsbA mutant showed that secreted enzyme activities, motility, production of the quorumsensing signal, and virulence were absent or substantially reduced. The impact of DsbA on secreted virulence factor production was mediated at multiple levels, including impacting on the Out secretion system and the virulence gene regulatory network. Transcriptome analyses revealed that the abundance of a broad, but defined, set of transcripts, including many virulence factors, was altered in the dsbA mutant, identifying a new virulence regulon responsive to extracytoplasmic conditions. In conclusion, DsbA plays a crucial, multifaceted role in the pathogenesis of E. carotovora subsp. atroseptica.
机译:胡萝卜欧文氏菌亚种。 atroseptica是一种肠细菌性植物病原体,在经济上引起重大的软腐病。发病机理由多种分泌的毒力因子介导,其中许多由II型(Out)分泌系统分泌。 DsbA催化将二硫键引入周质和分泌蛋白中。在这项研究中,野生型大肠杆菌(E. carotovora)亚种的细胞外蛋白质组(secretome)。通过光谱计数质谱法分析了arastroeptica SCRI1043和dsbA及其突变体。这表明dsbA失活对分泌组有巨大影响,并鉴定了代表已知,预测和新的候选毒力因子的多种DsbA-和Out-依赖性分泌蛋白。 dsbA突变体的进一步表征表明,分泌的酶活性,运动性,群体感应信号的产生和毒力均不存在或大大降低。 DsbA对分泌的毒力因子产生的影响在多个水平上介导,包括对Out分泌系统和毒力基因调控网络的影响。转录组分析表明,大量的但定义明确的 包括许多毒力因子在内的转录本在 dsbA突变体,可识别对 细胞质外条件。总之,DsbA扮演着至关重要,多方面的角色 在胡萝卜肠杆菌亚种的发病机理中的作用。 atroseptica。

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