Structural and functional diversity of bacterial cyclic nucleotide perception by CRP proteins.

microLife Pub Date : 2023-01-01 DOI:10.1093/femsml/uqad024
Elizaveta Krol, Laura Werel, Lars Oliver Essen, Anke Becker
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引用次数: 4

Abstract

Cyclic AMP (cAMP) is a ubiquitous second messenger synthesized by most living organisms. In bacteria, it plays highly diverse roles in metabolism, host colonization, motility, and many other processes important for optimal fitness. The main route of cAMP perception is through transcription factors from the diverse and versatile CRP-FNR protein superfamily. Since the discovery of the very first CRP protein CAP in Escherichia coli more than four decades ago, its homologs have been characterized in both closely related and distant bacterial species. The cAMP-mediated gene activation for carbon catabolism by a CRP protein in the absence of glucose seems to be restricted to E. coli and its close relatives. In other phyla, the regulatory targets are more diverse. In addition to cAMP, cGMP has recently been identified as a ligand of certain CRP proteins. In a CRP dimer, each of the two cyclic nucleotide molecules makes contacts with both protein subunits and effectuates a conformational change that favors DNA binding. Here, we summarize the current knowledge on structural and physiological aspects of E. coli CAP compared with other cAMP- and cGMP-activated transcription factors, and point to emerging trends in metabolic regulation related to lysine modification and membrane association of CRP proteins.

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CRP蛋白对细菌环核苷酸感知的结构和功能多样性。
环AMP (cAMP)是大多数生物合成的普遍存在的第二信使。在细菌中,它在代谢、寄主定植、运动和许多其他对最佳适应性重要的过程中发挥着高度多样化的作用。cAMP感知的主要途径是通过来自多种多样的CRP-FNR蛋白超家族的转录因子。自40多年前在大肠杆菌中发现第一个CRP蛋白CAP以来,其同源物已经在近亲和远亲细菌物种中被表征。在没有葡萄糖的情况下,由CRP蛋白介导的碳分解代谢的camp介导的基因激活似乎仅限于大肠杆菌及其近亲。在其他门中,调控目标更加多样化。除cAMP外,cGMP最近被确定为某些CRP蛋白的配体。在CRP二聚体中,两个环核苷酸分子中的每一个都与两个蛋白质亚基接触,并产生有利于DNA结合的构象变化。在这里,我们总结了目前关于大肠杆菌CAP与其他cAMP和cgmp激活的转录因子的结构和生理方面的知识,并指出了与赖氨酸修饰和CRP蛋白膜关联相关的代谢调节的新趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
5.50
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