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首页> 外文期刊>Environmental microbiology >The pleiotropic Legionella transcription factor LvbR links the Lqs and c-di-GMP regulatory networks to control biofilm architecture and virulence
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The pleiotropic Legionella transcription factor LvbR links the Lqs and c-di-GMP regulatory networks to control biofilm architecture and virulence

机译:Pleiotropic Legionella转录因子LVBR链接LQS和C-Di-GMP调节网络以控制生物膜结构和毒力

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摘要

The causative agent of Legionnaires' disease, Legionella pneumophila, colonizes amoebae and biofilms in the environment. The opportunistic pathogen employs the Lqs (Legionella quorum sensing) system and the signalling molecule LAI-1 (Legionella autoinducer-1) to regulate virulence, motility, natural competence and expression of a 133 kb genomic "fitness island", including a putative novel regulator. Here, we show that the regulator termed LvbR is an LqsS-regulated transcription factor that binds to the promoter of lpg1056/hnox1 (encoding an inhibitor of the diguanylate cyclase Lpg1057), and thus, regulates proteins involved in c-di-GMP metabolism. LvbR determines biofilm architecture, since L. pneumophila lacking lvbR accumulates less sessile biomass and forms homogeneous mat-like structures, while the parental strain develops more compact bacterial aggregates. Comparative transcriptomics of sessile and planktonic Delta lvbR or Delta lqsR mutant strains revealed concerted (virulence, fitness island, metabolism) and reciprocally (motility) regulated genes in biofilm and broth respectively. Moreover, Delta lvbR is hyper-competent for DNA uptake, defective for phagocyte infection, outcompeted by the parental strain in amoebae co-infections and impaired for cell migration inhibition. Taken together, our results indicate that L. pneumophila LvbR is a novel pleiotropic transcription factor, which links the Lqs and c-di-GMP regulatory networks to control biofilm architecture and pathogen-host cell interactions.
机译:Legionnaires疾病,军团菌,肺炎,在环境中殖民植入的致病因子。机会主义病原体使用LQS(军团群体传感)系统和信号分子Lai-1(军团菌Autoinducer-1)来调节133 kB基因组“健身岛”的毒力,运动,自然能力和表达,包括推定的新型调节剂。在这里,我们认为稳压剂称为LVBR是LQSS调节的转录因子,其与LPG1056 / HNOX1的启动子结合(编码Diguantylylate LPG1057的抑制剂),因此调节参与C-Di-GMP代谢的蛋白质。 LVBR决定生物膜结构,因为L.缺乏LVBR的肺炎积聚较少的无梗死生物量并形成均匀的垫子的结构,而父母菌株发生更紧凑的细菌聚集体。比较转录组织和浮游δ1VBR或DELTA LQSR突变体菌株分别揭示了生物膜和肉汤中的齐全(毒力,健身岛,新陈代谢)和互相调节基因。此外,Delta LVBR是DNA摄取的过度竞争力,对吞噬细胞感染有缺陷,由Amoebae中的亲本菌株脱颖而出,并且对于细胞迁移抑制而受损。我们的结果表明,L.PneumophilaLVBR是一种新型的抗性转录因子,它将LQS和C-DI-GMP调节网络连接到控制生物膜结构和病原体 - 宿主细胞相互作用。

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  • 来源
    《Environmental microbiology》 |2019年第3期|共19页
  • 作者单位

    Univ Zurich Fac Med Inst Med Microbiol Gloriastr 30 CH-8006 Zurich Switzerland;

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Pettenkoferstr 9a D-80336 Munich Germany;

    Inst Pasteur Unite Biol Bacteries Intracellulaires 28 Rue Dr Roux F-75724 Paris France;

    Univ Zurich Fac Med Inst Med Microbiol Gloriastr 30 CH-8006 Zurich Switzerland;

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Pettenkoferstr 9a D-80336 Munich Germany;

    Inst Pasteur Unite Biol Bacteries Intracellulaires 28 Rue Dr Roux F-75724 Paris France;

    Inst Pasteur Unite Biol Bacteries Intracellulaires 28 Rue Dr Roux F-75724 Paris France;

    Univ Zurich Fac Med Inst Med Microbiol Gloriastr 30 CH-8006 Zurich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
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