Department of Agricultural Biotechnology, Seoul National University, Korea.
Department of Applied Bioscience, Dong-A University, Busan, Korea.
FEBS J. 2020 Nov;287(21):4710-4728. doi: 10.1111/febs.15267. Epub 2020 Mar 15.
The synthetic biocide triclosan targets enoyl-acyl carrier protein reductase(s) (ENR) in bacterial type II fatty acid biosynthesis. Screening and sequence analyses of the triclosan resistome from the soil metagenome identified a variety of triclosan-resistance ENRs. Interestingly, the mode of triclosan resistance by one hypothetical protein was elusive, mainly due to a lack of sequence similarity with other proteins that mediate triclosan resistance. Here, we carried out a structure-based function prediction of the hypothetical protein, herein referred to as FabMG, and in vivo and in vitro functional analyses. The crystal structure of FabMG showed limited structural homology with FabG and FabI, which are also involved in type II fatty acid synthesis. In vivo complementation and in vitro activity assays indicated that FabMG is functionally a FabI-type ENR that employs NADH as a coenzyme. Variations in the sequence and structure of FabMG are likely responsible for inefficient binding of triclosan, resulting in triclosan resistance. These data unravel a previously uncharacterized FabMG, which is prevalent in various microbes in triclosan-contaminated environments and provide mechanistic insight into triclosan resistance.
合成杀菌剂三氯生靶向细菌 II 型脂肪酸生物合成中的烯酰基辅酶 A 还原酶 (ENR)。从土壤宏基因组中筛选和序列分析三氯生抗性组,鉴定出多种三氯生抗性 ENR。有趣的是,一种假定蛋白的三氯生抗性模式难以捉摸,主要是因为它与介导三氯生抗性的其他蛋白缺乏序列相似性。在这里,我们对假定蛋白进行了基于结构的功能预测,本文称为 FabMG,并进行了体内和体外功能分析。FabMG 的晶体结构与 FabG 和 FabI 表现出有限的结构同源性,它们也参与 II 型脂肪酸合成。体内互补和体外活性测定表明,FabMG 在功能上是一种 FabI 型 ENR,其辅酶是 NADH。FabMG 序列和结构的变化可能导致与三氯生结合效率降低,从而产生三氯生抗性。这些数据揭示了一种以前未表征的 FabMG,它在受三氯生污染的环境中的各种微生物中普遍存在,并为三氯生抗性提供了机制上的见解。