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Near-perfect control of the regioselective glucosylation enabled by rational design of glycosyltransferases - ScienceDirect

By A Mystery Man Writer

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Structurefunction relationships in plant UDP-glycosyltransferases - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

PDF) Disaccharide phosphorylases: Structure, catalytic mechanisms and directed evolution

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Structurefunction relationships in plant UDP-glycosyltransferases - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Engineered production of bioactive polyphenolic O-glycosides - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Rational design of a highly active N-glycosyltransferase mutant using fragment replacement approach - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Novel disaccharide inhibitors for the bacterial galactosyltransferase LgtC: Design, synthesis via Heyns rearrangement, and biochemical evaluation - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Evolving the 3-O/6-O regiospecificity of a microbial glycosyltransferase for efficient production of ginsenoside Rh1 and unnatural ginsenoside - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Docking-guided rational engineering of a macrolide glycosyltransferase glycodiversifies epothilone B

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Focused rational iterative site-specific mutagenesis (FRISM): A powerful method for enzyme engineering - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Utilization of glycosyltransferases as a seamless tool for synthesis and modification of the oligosaccharides-A review - ScienceDirect

Near-perfect control of the regioselective glucosylation enabled by  rational design of glycosyltransferases - ScienceDirect

Evolving the 3-O/6-O regiospecificity of a microbial glycosyltransferase for efficient production of ginsenoside Rh1 and unnatural ginsenoside - ScienceDirect