首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Exploring Environmental Control of Cyclic di-GMP Signaling in Vibrio cholerae by Using the Ex Vivo Lysate Cyclic di-GMP Assay (TELCA)
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Exploring Environmental Control of Cyclic di-GMP Signaling in Vibrio cholerae by Using the Ex Vivo Lysate Cyclic di-GMP Assay (TELCA)

机译:通过体外裂解液循环二GMP测定(TELCA)探索霍乱弧菌中循环二GMP信号的环境控制

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摘要

Vibrio cholerae senses its environment, including the surrounding bacterial community, using both the second messenger cyclic di-GMP (c-di-GMP) and quorum sensing (QS) to regulate biofilm formation and other bacterial behaviors. Cyclic di-GMP is synthesized by diguanylate cyclase (DGC) enzymes and degraded by phosphodiesterase (PDE) enzymes. V. cholerae encodes a complex network of 61 enzymes predicted to mediate changes to the levels of c-di-GMP in response to extracellular signals, and the transcription of many of these enzymes is influenced by QS. Because of the complexity of the c-di-GMP signaling system in V. cholerae, it is difficult to determine if modulation of intracellular c-di-GMP in response to different stimuli is driven primarily by changes in c-di-GMP synthesis or hydrolysis. Here, we describe a novel method, named the ex vivo lysate c-di-GMP assay (TELCA), that systematically measures total DGC and PDE cellular activity. We show that V. cholerae grown in different environments exhibits significantly different intracellular levels of c-di-GMP, and we used TELCA to determine that these differences correspond to changes in both c-di-GMP synthesis and hydrolysis. Furthermore, we show that the increased concentration of c-di-GMP at low cell density is primarily due to increased DGC activity due to the DGC CdgA. Our findings highlight the idea that modulation of both total DGC and PDE activity alters the intracellular concentration of c-di-GMP, and we present a new method that is widely applicable to the systematic analysis of complex c-di-GMP signaling networks.
机译:霍乱弧菌利用第二信使循环双GMP(c-di-GMP)和群体感应(QS)来调节其生物膜形成和其他细菌行为,从而感测其环境,包括周围的细菌群落。环状双GMP由双鸟苷酸环化酶(DGC)酶合成,并由磷酸二酯酶(PDE)酶降解。霍乱弧菌编码61个酶的复杂网络,这些酶预计会介导c-di-GMP的水平响应细胞外信号,而这些酶中的许多酶的转录受QS影响。由于霍乱弧菌中c-di-GMP信号系统的复杂性,很难确定响应不同刺激的细胞内c-di-GMP的调节是否主要是由c-di-GMP合成的变化或水解。在这里,我们描述了一种新颖的方法,称为离体裂解物c-di-GMP分析(TELCA),可系统地测量总DGC和PDE细胞活性。我们显示在不同环境中生长的霍乱弧菌展现出明显不同的细胞内c-di-GMP水平,并且我们使用TELCA来确定这些差异对应于c-di-GMP合成和水解的变化。此外,我们表明,在低细胞密度下c-di-GMP的浓度增加主要是由于DGC CdgA导致DGC活性增加。我们的发现突出了总DGC和PDE活性的调节都会改变细胞内c-di-GMP浓度的想法,并且我们提出了一种新方法,可广泛应用于复杂c-di-GMP信号网络的系统分析。

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