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Glucosidases
United States Patent (19) 11, 3,708,396 Mitsuhashi Et Al
Review Article Pullulanase: Role in Starch Hydrolysis and Potential Industrial Applications
Catalytic Properties, Functional Attributes and Industrial Applications of B-Glucosidases
1 the Synergistic Actions of Hydrolytic Genes in Coexpression Networks Reveal the Potential
(12) United States Patent (10) Patent No.: US 9,689,046 B2 Mayall Et Al
Action of Multiple Rice -Glucosidases on Abscisic Acid Glucose Ester
Potential and Utilization of Thermophiles and Thermostable Enzymes in Biorefining Pernilla Turner, Gashaw Mamo and Eva Nordberg Karlsson*
Review Article Pullulanase: Role in Starch Hydrolysis and Potential Industrial Applications
Fungal Beta-Glucosidases: a Bottleneck in Industrial Use of Lignocellulosic Materials
Characterization of Three Extracellular Β-Glucosidases Produced by a Fungal Isolate Aspergillus Sp
Purification, Characterization and Gene Analysis of a New Α-Glucosidase from Shiraia Sp
A Computational Comparative Study of Α-Glucosidase Enzyme Divergence ©2015 Mehraban Et Al
Alpha-Amylase and Alpha-Glucosidase Enzyme Inhibition and Antioxidant Potential of 3-Oxolupenal and Katononic Acid Isolated from Nuxia Oppositifolia
Strategies for Increased Lactic Acid Production from Algal Cake Fermentations at Low Ph by Lactobacillus Casei
The Metagenome of an Anaerobic Microbial Community Decomposing Poplar
12) United States Patent (10
Analysis of Anoxybacillus Genomes from the Aspects of Lifestyle Adaptations, Prophage Diversity, and Carbohydrate Metabolism
Study on Metabolic Behavior of Pesticides in Aquatic Plants: Uptake, Translocation and Metabolism by Water Milfoil
Top View
(A-Amylase and B-Glucosidase) Inhibitory Activity of Morinda Lucida and Momordica Charantia Leaves from Benin
Effect of Barium Addition on Hydrolytic Enzymatic Activities in Food Waste
The Enzyme Database: New Enzymes 06/27/2006 05:11 PM
And Exo-Cellulase Interactions Are Synergistic
Characterization of an Α-Glucosidase Enzyme Conserved In
Novel Benzoxazine-Based Aglycones Block Glucose Uptake in Vivo by Inhibiting Glycosidases
Intraluminal and Mucosal Starch Digestion in Congenital Deficiency of Intestinal Sucrase and Isomaltase Activities
Insights Into the Genomic and Metabolic Adaptations of Termite
(12) Patent Application Publication (10) Pub. No.: US 2015/0240226A1 Mathur Et Al
Yeast Expressing Saccharolytic Enzymes for Consolidated Bioprocessing Using Starch and Cellulose
Different Distributions of Α−Glucosidases and Amylases in Milling Fractions of Rice Grains
Structural Biology of Starch-Degrading Enzymes and Their Regulation
And Β-Glucosidases and Α- and Β-Galactosidases from Red Palm Weevil, Rhynchophorus Ferrugineus (Olivier) (Col.: Curculionide)
Mammalian Mucosal α-Glucosidases Coordinate with α-Amylase in The
On-Site Enzyme Production by Trichoderma Asperellum for The
Beta-Glucosidases 1
Glycoside Hydrolases: Catalytic Base/Nucleophile Diversity
Debranching Enzymes of Potato Tubers {Solarium Tuberosum L.)
In Vitro Α- Amylase and Α- Glucosidases Inhibitory Effects of Some Plant Extracts
Glucosidase Inhibitors: Binding Orientation and Influence on Selectivity
Malt Enzymes the Key to Successful Brewing
Glucosidase Inhibitors
Characterization of Maltase and Sucrase Inhibitory Constituents from Rhodiola Crenulata
Purification and Characterization of Β-Glucosidase from Melanocarpus Sp
Practical Enzymatic Brewing
Trichoderma Virens and Maize As Model Systems ______
2011 PSNA 50Th Anniversary Meeting, Hilo, Hawaii
Structural Elements Responsible for the Glucosidic Linkage-Selectivity of a Glycoside Hydrolase Family 13 Exo-Glucosidaseq