Related Experiment Video
Updated: Jan 4, 2026

High-throughput Screening of Carbohydrate-degrading Enzymes Using Novel Insoluble Chromogenic Substrate Assay Kits
Published on: September 20, 2016
β-Xylosidases: Structural Diversity, Catalytic Mechanism, and Inhibition by Monosaccharides
Ali Rohman1,2, Bauke W Dijkstra3, Ni Nyoman Tri Puspaningsih1,2
1Department of Chemistry, Faculty of Science and Technology, Universitas Airlangga, Surabaya 60115, Indonesia.
Abstract:
Xylan, a prominent component of cellulosic biomass, has a high potential for degradation into reducing sugars, and subsequent conversion into bioethanol. This process requires a range of xylanolytic enzymes. Among them, β-xylosidases are crucial, because they hydrolyze more glycosidic bonds than any of the other xylanolytic enzymes. They also enhance the efficiency of the process by degrading xylooligosaccharides, which are potent inhibitors of other hemicellulose-/xylan-converting enzymes. On the other hand, the β-xylosidase itself is also inhibited by monosaccharides that may be generated in high concentrations during the saccharification process. Structurally, β-xylosidases are diverse enzymes with different substrate specificities and enzyme mechanisms. Here, we review the structural diversity and catalytic mechanisms of β-xylosidases, and discuss their inhibition by monosaccharides.
Related Concept Videos
Biosynthesis of Polysaccharides
Chemistry of Carbohydrates
Chemistry of Carbohydrates
Introduction to Carbohydrates
Carbohydrate Digestion
Microbial Fermentation

