A Luminescence‐Based Coupled Enzyme Assay Enables High‐Throughput Quantification of the Bacterial Second Messenger 3’3’‐Cyclic‐Di‐AMP

第二信使系统 效应器 磷酸二酯酶 生物 环核苷酸 核苷酸 环磷酸腺苷 信号转导 细胞信号 生物化学 化学 细胞生物学 基因 受体
作者
Shivam A. Zaver,Alex J. Pollock,Vishant Mahendra Boradia,Joshua J. Woodward
出处
期刊:ChemBioChem [Wiley]
卷期号:22 (6): 1030-1041 被引量:2
标识
DOI:10.1002/cbic.202000667
摘要

Cyclic dinucleotide signaling systems, which are found ubiquitously throughout nature, allow organisms to rapidly and dynamically sense and respond to alterations in their environments. In recent years, the second messenger, cyclic di-(3',5')-adenosine monophosphate (c-di-AMP), has been identified as an essential signaling molecule in a diverse array of bacterial genera. We and others have shown that defects in c-di-AMP homeostasis result in severe physiological defects and virulence attenuation in many bacterial species. Despite significant advancements in the field, there is still a major gap in the understanding of the environmental and cellular factors that influence c-di-AMP dynamics due to a lack of tools to sensitively and rapidly monitor changes in c-di-AMP levels. To address this limitation, we describe here the development of a luciferase-based coupled enzyme assay that leverages the cyclic nucleotide phosphodiesterase, CnpB, for the sensitive and high-throughput quantification of 3'3'-c-di-AMP. We also demonstrate the utility of this approach for the quantification of the cyclic oligonucleotide-based anti-phage signaling system (CBASS) effector, 3'3'-cGAMP. These findings establish CDA-Luc as a more affordable and sensitive alternative to conventional c-di-AMP detection tools with broad utility for the study of bacterial cyclic dinucleotide physiology.

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