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首页> 外文期刊>Journal of bacteriology >Quorum Sensing Controls Biofilm Formation in Vibrio cholerae through Modulation of Cyclic Di-GMP Levels and Repression of vpsT
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Quorum Sensing Controls Biofilm Formation in Vibrio cholerae through Modulation of Cyclic Di-GMP Levels and Repression of vpsT

机译:群体感应通过调节循环Di-GMP水平和抑制vpsT来控制霍乱弧菌的生物膜形成。

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Two chemical signaling systems, quorum sensing (QS) and 3′,5′-cyclic diguanylic acid (c-di-GMP), reciprocally control biofilm formation in Vibrio cholerae. QS is the process by which bacteria communicate via the secretion and detection of autoinducers, and in V. cholerae, QS represses biofilm formation. c-di-GMP is an intracellular second messenger that contains information regarding local environmental conditions, and in V. cholerae, c-di-GMP activates biofilm formation. Here we show that HapR, a major regulator of QS, represses biofilm formation in V. cholerae through two distinct mechanisms. HapR controls the transcription of 14 genes encoding a group of proteins that synthesize and degrade c-di-GMP. The net effect of this transcriptional program is a reduction in cellular c-di-GMP levels at high cell density and, consequently, a decrease in biofilm formation. Increasing the c-di-GMP concentration at high cell density to the level present in the low-cell-density QS state restores biofilm formation, showing that c-di-GMP is epistatic to QS in the control of biofilm formation in V. cholerae. In addition, HapR binds to and directly represses the expression of the biofilm transcriptional activator, vpsT. Together, our results suggest that V. cholerae integrates information about the vicinal bacterial community contained in extracellular QS autoinducers with the intracellular environmental information encoded in c-di-GMP to control biofilm formation.
机译:两种化学信号系统,群体感应(QS)和3',5'-环二鸟苷酸(c-di-GMP),相互控制霍乱弧菌的生物膜形成。 QS是细菌通过自身诱导物的分泌和检测以及在V中进行交流的过程。霍乱,QS抑制生物膜形成。 c-di-GMP是一种细胞内第二信使,其中包含有关当地环境条件的信息,且以V为单位。霍乱,c-di-GMP激活生物膜形成。在这里,我们表明HapR是QS的主要调节因子,可抑制 V中生物膜的形成。霍乱通过两种不同的机制。 HapR控制14个基因的转录,该14个基因编码一组合成和降解c-di-GMP的蛋白质。该转录程序的净作用是在高细胞密度下细胞c-di-GMP水平降低,因此生物膜形成减少。在高细胞密度下将c-di-GMP浓度增加至低细胞密度QS状态下存在的水平可恢复生物膜形成,表明在中,c-di-GMP在控制生物膜形成方面比QS上位。 V.霍乱。此外,HapR结合并直接抑制生物膜转录激活因子 vpsT 的表达。在一起,我们的结果表明 V。霍乱将细胞外QS自诱导物中包含的邻近细菌群落信息与c-di-GMP中编码的细胞内环境信息相结合,以控制生物膜的形成。

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