Venkataramani Prabhadevi, Liang Zhao-Xun
Division of Chemical Biology and Biotechnology, School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore, 637551, Singapore.
Methods Mol Biol. 2017;1657:11-22. doi: 10.1007/978-1-4939-7240-1_2.
C-di-GMP has emerged as a prevalent bacterial messenger that controls a multitude of bacterial behaviors. Having access to milligram or gram quantities of c-di-GMP is essential for the biochemical and structural characterization of enzymes and effectors involved in c-di-GMP signaling. Although c-di-GMP can be synthesized using chemical methods, diguanylate cyclases (DGC)-based enzymatic synthesis is the most efficient method of preparing c-di-GMP today. Many DGCs are not suitable for c-di-GMP production because of poor protein stability and the presence of a c-di-GMP-binding inhibitory site (I-site) in most DGCs. We have identified and engineered a thermophilic DGC for efficient production of c-di-GMP for characterizing c-di-GMP signaling proteins and riboswitches. Importantly, residue replacement in the inhibitory I-site of the thermophilic DGC drastically relieved product inhibition to enable the production of hundreds of milligrams of c-di-GMP using 5-10 mg of this robust biocatalyst.
环二鸟苷酸(c-di-GMP)已成为一种普遍存在的细菌信使,可控制多种细菌行为。获得毫克或克级数量的c-di-GMP对于参与c-di-GMP信号传导的酶和效应物的生化及结构表征至关重要。虽然c-di-GMP可以通过化学方法合成,但基于双鸟苷酸环化酶(DGC)的酶促合成是目前制备c-di-GMP最有效的方法。由于蛋白质稳定性差以及大多数DGC中存在c-di-GMP结合抑制位点(I位点),许多DGC不适用于c-di-GMP的生产。我们已经鉴定并改造了一种嗜热DGC,用于高效生产c-di-GMP,以表征c-di-GMP信号蛋白和核糖开关。重要的是,嗜热DGC抑制性I位点中的残基替换极大地缓解了产物抑制,从而能够使用5-10毫克这种强大的生物催化剂生产数百毫克的c-di-GMP。