Area of research
Biotechnology · Biomedical Engineering
Research interest
Research interests include Biochemistry, Chemistry, Xylanase, Cellulase, Bifunctional, and Glycoside hydrolase.
Biochemical and structural characterization of a novel glycoside hydrolase family 8 endoxylanase with broad-spectrum xylooligosaccharide production
Development of an efficient chimeric trifunctional xylanase/glucanase/feruloyl esterase and its application in the bioconversion of corn stover into fermentable sugars
Biochemical analyses of a new GH18 chitinase from <i>Beauveria bassiana</i> KW1 and its synergy with a commercial protease on silkworm exuviae hydrolysis
Development of an Efficient Bifunctional Endoxylanase/Feruloyl Esterase Chimera for Coproduction of Ferulic Acid, <i>p</i> -Coumaric Acid, and Xylooligosaccharides
Molecular and Biochemical Analyses of a Novel Trifunctional Endoxylanase/Endoglucanase/Feruloyl Esterase from the Human Colonic Bacterium <i>Bacteroides intestinalis</i> DSM 17393
Characterization of two novel highly active glycoside hydrolase family 53 endo-1,4-β-galactanases and their synergism with other carbohydrases in plant polysaccharide decomposition
Insights into the Catalytic Mechanism of a Novel XynA and Structure-Based Engineering for Improving Bifunctional Activities
Structure-function relationship of bifunctional XynA
Biochemical analyses of a novel thermostable GH5 endo β-1,4-mannanase with minor β-1,4-glucosidic cleavage activity from Bacillus sp. KW1 and its synergism with a commercial α-galactosidase on galactomannan hydrolysis
Structural and biochemical characterization of bifunctional XynA
A novel thermostable GH10 xylanase with activities on a wide variety of cellulosic substrates from a xylanolytic Bacillus strain exhibiting significant synergy with commercial Celluclast 1.5 L in pretreated corn stover hydrolysis
A novel glycoside hydrolase family 42 enzyme with bifunctional β-galactosidase and α-L-arabinopyranosidase activities and its synergistic effects with cognate glycoside hydrolases in plant polysaccharides degradation