合理设计
唾液酸酶
化学
突变
产量(工程)
突变体
立体化学
生物化学
催化作用
酶
蛋白质工程
生物催化
组合化学
聚糖
糖基
糖苷水解酶
灵活性(工程)
定向进化
定点突变
糖基化
结构-活动关系
肽
化学合成
活动站点
拉伤
基因组
作者
Xueting Cao,Zhenxin Yan,Xue Ma,Xiao Yang,Zhuo Liu,Lianzhong Yang,Zhihong Cui,Li Xu,Xukai Jiang,Min Xiao
标识
DOI:10.1021/acs.jafc.5c10966
摘要
Sialyloligosaccharides are essential components of human milk oligosaccharides. Sialidases with transglycosylation activity have shown great potential for industrial production of sialyloligosaccharides using cheaper glycosyl donors. Herein, five novel sialidases with transglycosylation activity were identified from human gut metagenomic DNA, among which BiS47 synthesized 6'-sialyllactose with the highest yield of 1.32 g/L. Molecular dynamics simulations revealed that BiS47 possessed an open conformation of the catalytic pocket which was then remodeled to narrow, a more favorable near-attack conformation, by site-directed mutagenesis and combinatorial mutations based on the design of entrance loops flexibility and bottom residues side chains. Two mutants G185C and G398H were obtained with 6'-sialyllactose yields increased 2.43-fold and 2.45-fold, respectively. "Property grafting" of G185C and G398H onto other four sialidases improved their transglycosylation activities, and eight mutants generated also exhibited narrowed catalytic pockets. This work provides efficient enzymatic tools for sialyloligosaccharide synthesis and important guidance for rational design of glycosidases.
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