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A Conserved Regulatory Circuit Controls Large Adhesins in Vibrio cholerae

机译:一个保守的调节电路控制霍乱弧菌中的大粘附素

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The dinucleotide second messenger c-di-GMP has emerged as a central regulator of reversible cell attachment during bacterial biofilm formation. A prominent cell adhesion mechanism first identified in pseudomonads combines two c-di-GMP-mediated processes: transcription of a large adhesin and its cell surface display via posttranslational proteolytic control. Here, we characterize an orthologous c-di-GMP effector system and show that it is operational in Vibrio cholerae , where it regulates two distinct classes of adhesins. Through structural analyses, we reveal a conserved autoinhibition mechanism of the c-di-GMP receptor that controls adhesin proteolysis and present a structure of a c-di-GMP-bound receptor module. We further establish functionality of the periplasmic protease controlled by the receptor against the two adhesins. Finally, transcription and functional assays identify physiological roles of both c-di-GMP-regulated adhesins in surface attachment and biofilm formation. Together, our studies highlight the conservation of a highly efficient signaling effector circuit for the control of cell surface adhesin expression and its versatility by revealing strain-specific variations.
机译:二核苷酸第二信使c-di-GMP已成为细菌生物膜形成过程中可逆细胞附着的中央调节剂。首先在假单胞菌中发现的突出的细胞粘附机制结合了两个c-di-GMP介导的过程:大粘附素的转录及其通过翻译后蛋白水解控制的细胞表面展示。在这里,我们表征了直系同源的c-di-GMP效应器系统,并表明它在霍乱弧菌中运作,在该系统中,它调节两种不同的粘附素类。通过结构分析,我们揭示了控制粘附素蛋白水解的c-di-GMP受体的保守自抑制机制,并提出了c-di-GMP结合的受体模块的结构。我们进一步建立了针对两种粘附素的受体控制的周质蛋白酶的功能。最后,转录和功能分析确定了c-di-GMP调控的粘附素在表面附着和生物膜形成中的生理作用。总之,我们的研究通过揭示菌株特异性变异,强调了用于控制细胞表面粘附素表达及其多功能性的高效信号传导效应器电路的保护。

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