Galea Charles A, Roberts Kade D, Zhu Yan, Thompson Philip E, Li Jian, Velkov Tony
Monash Biomedicine Discovery Institute, Department of Microbiology, Monash University , Parkville, Victoria 3800, Australia.
Biochemistry. 2017 Jan 31;56(4):657-668. doi: 10.1021/acs.biochem.6b01139. Epub 2017 Jan 17.
Polymyxins remain one of the few antibiotics available for treating antibiotic resistant bacteria. Here we describe polymyxin B thioesterase which performs the final step in polymyxin B biosynthesis. Isolated thioesterase catalyzed cyclization of an N-acetylcystamine polymyxin B analogue to form polymyxin B. The thioesterase contained a catalytic cysteine unlike most thioesterases which possess a serine. Supporting this, incubation of polymyxin B thioesterase with reducing agents abolished enzymatic activity, while mutation of the catalytic cysteine to serine significantly decreased activity. NMR spectroscopy demonstrated that uncyclized polymyxin B was disordered in solution, unlike other thioesterase substrates which adopt a transient structure similar to their product. Modeling showed the thioesterase substrate-binding cleft was highly negatively charged, suggesting a mechanism for the cyclization of the substrate. These studies provide new insights into the role of polymyxin thioesterase in polymyxin biosynthesis and highlight its potential use for the chemoenzymatic synthesis of polymyxin lipopeptides.
多粘菌素仍然是少数可用于治疗抗生素耐药细菌的抗生素之一。在此,我们描述了在多粘菌素B生物合成中执行最后一步的多粘菌素B硫酯酶。分离得到的硫酯酶催化N-乙酰半胱胺多粘菌素B类似物环化形成多粘菌素B。该硫酯酶含有一个催化性半胱氨酸,这与大多数含有丝氨酸的硫酯酶不同。还原试剂与多粘菌素B硫酯酶一起孵育会消除酶活性,而催化性半胱氨酸突变为丝氨酸会显著降低活性,这进一步证明了这一点。核磁共振光谱表明,未环化的多粘菌素B在溶液中是无序的,这与其他硫酯酶底物不同,后者会形成与其产物相似的瞬时结构。建模显示硫酯酶底物结合裂隙带高度负电荷,这表明了底物环化的机制。这些研究为多粘菌素硫酯酶在多粘菌素生物合成中的作用提供了新见解,并突出了其在多粘菌素脂肽化学酶促合成中的潜在用途。