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Shedding light on bioluminescence regulation in Vibrio fischeri.揭示发光杆菌中生物发光调控的奥秘。
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The multiple signaling systems regulating virulence in Pseudomonas aeruginosa.调控铜绿假单胞菌毒力的多重信号系统。
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Vibrio fluvialis: an unusual enteric pathogen of increasing public health concern.弗氏弧菌:一种日益引起公众健康关注的不常见肠道病原体。
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Quorum sensing negatively regulates hemolysin transcriptionally and posttranslationally in Vibrio cholerae.群体感应在转录和翻译后水平上负调控霍乱弧菌溶血素的表达。
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Functional analysis of three AHL autoinducer synthase genes in Mesorhizobium loti reveals the important role of quorum sensing in symbiotic nodulation.对百脉根中慢生根瘤菌三个AHL自诱导物合成酶基因的功能分析揭示了群体感应在共生结瘤中的重要作用。
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Regulatory targets of quorum sensing in Vibrio cholerae: evidence for two distinct HapR-binding motifs.霍乱弧菌群体感应的调控靶点:两个不同的HapR结合基序的证据
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群体感应调控级联反应控制弗氏弧菌的发病机制。

Quorum sensing regulatory cascades control Vibrio fluvialis pathogenesis.

机构信息

State Key Laboratory for Infectious Disease Prevention and Control, National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China.

出版信息

J Bacteriol. 2013 Aug;195(16):3583-9. doi: 10.1128/JB.00508-13. Epub 2013 Jun 7.

DOI:10.1128/JB.00508-13
PMID:23749976
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3754567/
Abstract

Quorum sensing (QS) is a process by which individual bacteria are able to communicate with one another, thereby enabling the population as a whole to coordinate gene regulation and subsequent phenotypic outcomes. Communication is accomplished through production and detection of small molecules in the extracellular milieu. In many bacteria, particularly Vibrio species, multiple QS systems result in multiple signals, as well as cross talk between systems. In this study, we identify two QS systems in the halophilic enteric pathogen Vibrio fluvialis: one acyl-homoserine lactone (AHL) based and one CAI-1/AI-2 based. We show that a LuxI homolog, VfqI, primarily produces 3-oxo-C10-HSL, which is sensed by a LuxR homolog, VfqR. VfqR-AHL is required to activate vfqI expression and autorepress vfqR expression. In addition, we have shown that similar to that in V. cholerae and V. harveyi, V. fluvialis produces CAI-1 and AI-2 signal molecules to activate the expression of a V. cholerae HapR homolog through LuxO. Although VfqR-AHL does not regulate hapR expression, HapR can repress vfqR transcription. Furthermore, we found that QS in V. fluvialis positively regulates production of two potential virulence factors, an extracellular protease and hemolysin. QS also affects cytotoxic activity against epithelial tissue cultures. These data suggest that V. fluvialis integrates QS regulatory pathways to play important physiological roles in pathogenesis.

摘要

群体感应 (QS) 是一种个体细菌能够相互通信的过程,从而使整个群体能够协调基因调控和随后的表型结果。这种通信是通过在细胞外环境中产生和检测小分子来实现的。在许多细菌中,特别是弧菌属,多个 QS 系统会产生多个信号,以及系统之间的串扰。在这项研究中,我们在嗜盐肠道病原体弗氏弧菌中鉴定出两种 QS 系统:一种酰基高丝氨酸内酯 (AHL) 为基础的和一种 CAI-1/AI-2 为基础的。我们表明,一个 LuxI 同源物,VfqI,主要产生 3-氧代-C10-HSL,由一个 LuxR 同源物,VfqR 感应。VfqR-AHL 是激活 vfqI 表达和自动抑制 vfqR 表达所必需的。此外,我们已经表明,类似于霍乱弧菌和 Harveyi 弧菌,弗氏弧菌产生 CAI-1 和 AI-2 信号分子,通过 LuxO 激活霍乱弧菌 HapR 同源物的表达。尽管 VfqR-AHL 不调节 hapR 表达,但 HapR 可以抑制 vfqR 转录。此外,我们发现弗氏弧菌的 QS 正向调节两种潜在毒力因子的产生,即细胞外蛋白酶和溶血素。QS 还会影响对上皮组织培养物的细胞毒性活性。这些数据表明,弗氏弧菌整合了 QS 调节途径,在发病机制中发挥重要的生理作用。