Area of research
Endocrinology, Diabetes and Metabolism · Molecular Biology
Research interest
Research interests include Diet, Metabolism, and Disease, Microbial Metabolic Engineering and Bioproduction, Enzyme Catalysis and Immobilization, and Enzyme Production and Characterization.
Computational design of allulose-responsive biosensor toolbox for auto-inducible protein expression and CRISPRi mediated dynamic metabolic regulation.
Engineering a Bifunctional Tag for Enhancing Thermostability and Immobilization Efficiency of d-Allulose 3-Epimerase.
Cyclization Decoded: Engineering Amylomaltase for Efficient α-Glucan Transformations.
Efficient Mycoprotein Production with Low CO<sub>2</sub> Emissions through Metabolic Engineering and Fermentation Optimization of <i>Fusarium venenatum</i>.
Elucidation of the noncovalent interactions driving enzyme activity guides branching enzyme engineering for α-glucan modification.
Synchronous Bioproduction of Betanin and Mycoprotein in the Engineered Edible Fungus <i>Fusarium venenatum</i>.
Enzymatic Synthesis of Novel Terpenoid Glycoside Derivatives Decorated with <i>N</i>-Acetylglucosamine Catalyzed by UGT74AC1.
Effects of three extraction methods on the structural and functional properties of insoluble dietary fibers from mycoprotein
Engineering substrate specificity of HAD phosphatases and multienzyme systems development for the thermodynamic-driven manufacturing sugars.
Protein Engineering of Glucosylglycerol Phosphorylase Facilitating Efficient and Highly Regio- and Stereoselective Glycosylation of Polyols in a Synthetic System
Review of natural sugar substitutes and comparing their potential impacts on obesity issue
Construction of allitol synthesis pathway by multi-enzyme coexpression in <i>Escherichia coli</i> and its application in allitol production