Hoque Md Anarul, Zhang Yong, Chen Liuqing, Yang Guangyu, Khatun Mst Afroza, Chen Haifeng, Hao Liu, Feng Yan
State Key Laboratory of Microbial Metabolism, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University , Shanghai 200240, China.
ACS Chem Biol. 2017 May 19;12(5):1188-1193. doi: 10.1021/acschembio.7b00018. Epub 2017 Mar 27.
The remodeling of active sites to generate novel biocatalysts is an attractive and challenging task. We developed a stepwise loop insertion strategy (StLois), in which randomized residue pairs are inserted into active site loops. The phosphotriesterase-like lactonase from Geobacillus kaustophilus (GkaP-PLL) was used to investigate StLois's potential for changing enzyme function. By inserting six residues into active site loop 7, the best variant ML7-B6 demonstrated a 16-fold further increase in catalytic efficiency toward ethyl-paraoxon compared with its initial template, that is a 609-fold higher, >10 fold substrate specificity shift relative to that of wild-type lactonase. The remodeled variants displayed 760-fold greater organophosphate hydrolysis activity toward the organophosphates parathion, diazinon, and chlorpyrifos. Structure and docking computations support the source of notably inverted enzyme specificity. Considering the fundamental importance of active site loops, the strategy has potential for the rapid generation of novel enzyme functions by loop remodeling.
改造活性位点以生成新型生物催化剂是一项具有吸引力且颇具挑战性的任务。我们开发了一种逐步环插入策略(StLois),即将随机化的残基对插入活性位点环中。来自嗜热栖热放线菌的磷酸三酯酶样内酯酶(GkaP - PLL)被用于研究StLois改变酶功能的潜力。通过在活性位点环7中插入六个残基,最佳变体ML7 - B6对乙基对氧磷的催化效率相较于其初始模板进一步提高了16倍,即比野生型内酯酶高609倍,底物特异性发生了超过10倍的转变。改造后的变体对有机磷杀虫剂对硫磷、二嗪农和毒死蜱的有机磷酸盐水解活性提高了760倍。结构和对接计算支持了显著反转的酶特异性的来源。考虑到活性位点环的根本重要性,该策略具有通过环改造快速生成新型酶功能的潜力。