热稳定性
区域选择性
化学
葡萄糖苷
酶
生物化学
异源表达
产量(工程)
基质(水族馆)
蔗糖
异源的
生物催化
乙醇醛
催化作用
酶催化
糖苷水解酶
甘油
突变体
化学合成
立体化学
组合化学
赖氨酸
有机化学
作者
Ping Tian,Chang Li,Fengxu Xiao,Guiyang Shi,Youran Li
标识
DOI:10.1021/acs.jafc.5c15972
摘要
Glyceryl glucoside (GG) synthesis is constrained by the limited diversity and moderate thermostability of known sucrose phosphorylases (SPases). In this study, we identified six novel SPase-encoding genes by integrating bioinformatics mining, homology modeling, and enzymatic validation. Following heterologous expression in the thermotolerant chassis organism Bacillus licheniformis, functional characterization revealed that SPase from Thermanaerothrix solaris4228-RoL (TSP) exhibits an optimal reaction temperature of 70 °C─the highest whole-cell catalytic temperature reported for SPases to date. Furthermore, TSP’s product regioselectivity was dynamically tunable by reaction parameters, with the 1-αGG proportion increasing from 6.97% to 58.70% under varying conditions of the glycerol-to-sucrose ratio, substrate concentration, and temperature. Additionally, BsSP from Bifidobacterium scardoviiJCM 12489 achieved a GG yield of 263.86 g/L with 84.28% sucrose conversion under optimized conditions. This study provides a high-performance enzyme toolbox and efficient process for GG synthesis while deepening the mechanistic understanding of SPase catalysis, establishing a foundation for green biomanufacturing.
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