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A Rhizosphere-Derived β-glycosidase with Intrinsic Sequential Regioselectivity for Highly Efficient Production of
Lihua Jiang1, Lisi Zou1, Sen Zhang1
1Jiangsu Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, State Key Laboratory of Technologies for Chinese Medicine Pharmaceutical Process Control and Intelligent Manufacture, Nanjing University of Chinese Medicine, 138 Xianlin Road, Nanjing210023, Jiangsu, China.
Abstract:
Siamenoside I (SI), a high-intensity sweetener, is limited in natural abundance. A β-glycosidase (CoExg1) from Candida orthopsilosis L7 (isolated from the Siraitia grosvenorii rhizosphere) exhibits intrinsic sequential regioselectivity, enabling efficient SI production from mogroside V (MGV). Fermentation optimization increased SI yield from 70.34% (7 d) to 84.06% (72 h). CoExg1 rapidly cleaves the C-3 β-1,6 bond (89.35% SI in 20 min), then slowly hydrolyzes the C-24 bond to mogroside IIIE (MIIIE, 12 h)─a time-controlled process requiring no external regulation. Kinetic analysis showed a ∼50-fold higher catalytic efficiency toward MGV than toward SI. Molecular docking and dynamics revealed that the C-3 glycan of MGV binds in a catalytically competent conformation with stable hydrogen-bond networks, whereas SI's C-24 glycan hardly forms a productive binding mode, explaining the sequential selectivity. This work provides a sustainable SI production platform and unveils the structural basis of sequential regioselectivity in glycoside hydrolases.
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