Li Hong, Tanikawa Taichiro, Sato Yohei, Nakagawa Yoji, Matsuyama Tohey
Department of Applied Biological Chemistry, Faculty of Agriculture, Niigata University, Niigata, Japan.
Microbiol Immunol. 2005;49(4):303-10. doi: 10.1111/j.1348-0421.2005.tb03734.x.
Serrawettin W1 produced by Serratia marcescens is a surface active exolipid having various functions supporting behaviors of bacteria on surface environments. Through the genetic analyses of serrawettin-less mutants of S. marcescens 274, the swrW gene encoding putative serrawettin W1 synthetase was identified. Homology analysis of the putative SwrW demonstrated the presence of condensation, adenylation, thiolation, and thioesterase domains which are characteristic for nonribosomal peptide synthetase (NRPS). NRPSs have been known as multi-modular enzymes. Linear alignment of these modules specifying respective amino acids will enable peptide bond formation resulting in a specific amino acid sequence. Putative SwrW was uni-modular NRPS specifying only L-serine. Possible steps in this simple unimodular NRPS for biosynthesis of serrawettin W1 [ cyclo-(D-3-hydroxydecanoyl-L-seryl) (2) ] were predicted by referring to the ingenious enzymatic activity of gramicidin S synthetase (multi-modular NRPS) of Brevibacillus brevis.
粘质沙雷氏菌产生的serrawettin W1是一种表面活性胞外脂质,具有多种功能,支持细菌在表面环境中的行为。通过对粘质沙雷氏菌274无serrawettin突变体的遗传分析,鉴定出编码假定的serrawettin W1合成酶的swrW基因。对假定的SwrW进行同源性分析表明,存在缩合、腺苷化、硫醇化和硫酯酶结构域,这些是非核糖体肽合成酶(NRPS)的特征结构域。NRPSs是已知的多模块酶。这些指定各自氨基酸的模块的线性排列将使肽键形成,从而产生特定的氨基酸序列。假定的SwrW是单模块NRPS,仅指定L-丝氨酸。通过参考短短芽孢杆菌的短杆菌肽S合成酶(多模块NRPS)的巧妙酶活性,预测了这种简单单模块NRPS中serrawettin W1 [环-(D-3-羟基癸酰基-L-丝氨酰基)(2)]生物合成的可能步骤。