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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The Vibrio harveyi quorum-sensing system uses shared regulatory components to discriminate between multiple autoinducers.
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The Vibrio harveyi quorum-sensing system uses shared regulatory components to discriminate between multiple autoinducers.

机译:哈维氏弧菌群体感应系统使用共享的监管组件来区分多个自动诱导剂。

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摘要

The quorum-sensing bacterium Vibrio harveyi produces and responds to three autoinducers (AIs), and this sensory information converges to control the expression of bioluminescence, biofilm formation, type III secretion (TTS), and protease production. The AIs are detected by cognate sensor histidine kinases that all relay phosphate to the shared response regulator LuxO. LuxO indirectly represses the master regulator of quorum sensing, LuxR, through the activation of multiple genes encoding small regulatory RNAs (called qrr genes for Quorum Regulatory RNA). Here we use differential fluorescence induction to identify 50 quorum-sensing-controlled promoters. Some promoters only showed significant responses in the simultaneous presence of all three AIs, while others displayed substantial responses to the individual AIs. A differential response to each AI input state was also observed for qrr and luxR expression and LuxR protein production. Individual cell analyses revealed that, in each case, all the bacteriain the population respond in unison to the various AI inputs. We propose that the V. harveyi quorum-sensing transition is not switch-like but rather operates in a graded manner, and that this signaling arrangement, which uses shared regulatory proteins, nonetheless provides V. harveyi a mechanism to respond uniquely to different AI input states.
机译:群体感应细菌哈维弧菌产生并响应三种自动诱导物(AIs),并且这种感官信息聚合起来可以控制生物发光,生物膜形成,III型分泌(TTS)和蛋白酶产生的表达。通过关联的传感器组氨酸激酶检测AI,这些传感器将磷酸全部中继到共享的响应调节剂LuxO。 LuxO通过激活编码小调控RNA的多个基因(称为法定调控RNA的qrr基因),间接抑制群体感应的主要调控因子LuxR。在这里,我们使用差异荧光诱导来识别50个群体感应控制的启动子。一些启动子仅在同时存在所有三个AI时显示出显着的响应,而其他启动子对单个AI则显示出显着的响应。还针对qrr和luxR表达以及LuxR蛋白产生观察到了对每个AI输入状态的差异响应。单独的细胞分析表明,在每种情况下,种群中的所有细菌都会对各种AI输入产生一致的反应。我们建议哈维氏菌群体感应转变不是开关样的,而是以分级的方式运行,并且这种使用共享调节蛋白的信号转导安排仍然为哈维氏菌提供了一种机制,可以对不同的AI输入做出独特的反应。状态。

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