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Functional Characterization and Protein Engineering of Salvia miltiorrhiza Rosmarinic Acid Synthase
Yue Feng1, Zhoulu Wang1, Junbo Li1
1Zhejiang Provincial International S&T Cooperation Base for Active Ingredients of Medicinal and Edible Plants and Health, Zhejiang Provincial Key TCM Laboratory for Chinese Resource Innovation and Transformation, School of Pharmaceutical Sciences, Jinhua Academy, Zhejiang Chinese Medical University, Hangzhou 310053, China.
Abstract:
Rosmarinic acid (RA) has been incorporated in various nutritious and health-promoting products. Rosmarinic acid synthase (RAS) is a committed enzyme in RA biosynthesis. However, SmRASs from Salvia miltiorrhiza remains functionally uncharacterized. Herein, a group of SmRASs was identified from the S. miltiorrhiza, and recombinant SmRAS1 was demonstrated to convert caffeoyl-CoA and 3,4-dihydroxyphenyllactic acid to form RA. SmRAS1 exhibited maximum activity at 45 °C and pH 8.0 with Km values of 18 μM and 1647 μM for caffeoyl-CoA and 3,4-dihydroxyphenyllactic acid, respectively. Subsequently, three highly catalytic activity SmRAS1 mutations R367W, G293I, and G293Rwere obtained, exhibiting 1.53-2.15 fold higher catalytic efficiency than the wild-type enzyme. Structural analysis and molecular dynamics simulations revealed that enlarged substrate access tunnel and reduced flexibility of residues286-295 located above the substrate pocket enhanced its catalytic activity. These results elucidate the mechanism underlying RA biosynthesis in S. miltiorrhiza and provide a promising RAS for RA biosynthesis in microbes.
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