Abstract
α-l-arabinofuranosidase is a subfamily of glycosidases involved in the hydrolysis of l-arabinofuranosidic bonds, especially in those of the terminal non-reducing arabinofuranosyl residues of glycosides, from which efficient glycoside hydrolases can be screened for the transformation of ginsenosides. In this study, the ginsenoside Rc-hydrolyzing α-l-arabinofuranosidase gene, BsAbfA, was cloned from Bacilus subtilis, and its codons were optimized for efficient expression in E. coli BL21 (DE3). The recombinant protein BsAbfA fused with an N-terminal His-tag was overexpressed and purified, and then subjected to enzymatic characterization. Site-directed mutagenesis of BsAbfA was performed to verify the catalytic site, and the molecular mechanism of BsAbfA catalyzing ginsenoside Rc was analyzed by molecular docking, using the homology model of sequence alignment with other β-glycosidases. The results show that the purified BsAbfA had a specific activity of 32.6 U/mg. Under optimal conditions (pH 5, 40 °C), the kinetic parameters Km of BsAbfA for pNP-α-Araf and ginsenoside Rc were 0.6 mM and 0.4 mM, while the Kcat/Km were 181.5 s−1 mM−1 and 197.8 s−1 mM−1, respectively. More than 90% of ginsenoside Rc could be transformed by 12 U/mL purified BsAbfA at 40 °C and pH 5 in 24 h. The results of molecular docking and site-directed mutagenesis suggested that the E173 and E292 variants for BsAbfA are important in recognizing ginsenoside Rc effectively, and to make it enter the active pocket to hydrolyze the outer arabinofuranosyl moieties at C20 position. These remarkable properties and the catalytic mechanism of BsAbfA provide a good alternative for the effective biotransformation of the major ginsenoside Rc into Rd.
Highlights
Ginseng, as a famous traditional herbal medicine, has been used to cure diseases and promote health in East Asia for thousands of years
The results suggest that BsAbfA is an efficient enzyme for hydrolyzing ginsenoside Rc
The ginsenoside Rc-hydrolyzing α-L-arabinofuranosidase gene BsAbfA was cloned from B. subtilis, and the optimized recombinant protein was overexpressed and characterized successfully in E. coli
Summary
As a famous traditional herbal medicine, has been used to cure diseases and promote health in East Asia for thousands of years. The medicinal value of ginseng has been recognized worldwide [1,2]. Among over 100 ginsenosides isolated and identified from ginseng, five major ginsenosides, viz., Rb1 , Rb2 , Rc, Re, and Rg1 , account for more than 80% of all ginsenosides [6,7,8]. The content of ginsenoside Rd in nature is much less than that of the major ginsenosides [5,7], which makes it difficult to obtain ginsenoside Rd from ginseng and other plants. Some researchers have tried to obtain ginsenoside Rd by chemical synthesis, but found it difficult to succeed, because of its complex structure [14]
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