Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization of Cellulose

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Last updated 23 maio 2024
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Assessing the enzymatic effects of cellulases and LPMO in improving mechanical fibrillation of cotton linters, Biotechnology for Biofuels and Bioproducts
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Controlled depolymerization of cellulose by light-driven lytic polysaccharide oxygenases
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Recent advances in the efficient degradation of lignocellulosic metabolic networks by lytic polysaccharide monooxygenase
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Advances in lytic polysaccharide monooxygenases with the cellulose-degrading auxiliary activity family 9 to facilitate cellulose degradation for biorefinery - ScienceDirect
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Synergy curves during degradation of Avicel (5 g/L) by mixtures of a
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Frontiers Recent Advances in Screening Methods for the Functional Investigation of Lytic Polysaccharide Monooxygenases
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Following the fate of lytic polysaccharide monooxygenases (LPMOs) under oxidative conditions by NMR spectroscopy
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Biotechnology & Bioengineering, Biotechnology Journal
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
A sensitive, accurate, and high-throughput gluco-oligosaccharide oxidase-based HRP colorimetric method for assaying lytic polysaccharide monooxygenase activity, Biotechnology for Biofuels and Bioproducts
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization of Cellulose
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Cellulose Surface Degradation by a Lytic Polysaccharide Monooxygenase and Its Effect on Cellulase Hydrolytic Efficiency - ScienceDirect
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
A sensitive, accurate, and high-throughput gluco-oligosaccharide oxidase-based HRP colorimetric method for assaying lytic polysaccharide monooxygenase activity, Biotechnology for Biofuels and Bioproducts
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Investigating lytic polysaccharide monooxygenase-assisted wood cell wall degradation with microsensors
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
Novel Two-Step Process in Cellulose Depolymerization: Hematite-Mediated Photocatalysis by Lytic Polysaccharide Monooxygenase and Fenton Reaction
Engineered LPMO Significantly Boosting Cellulase-Catalyzed Depolymerization  of Cellulose
QM/MM Studies into the H2O2-Dependent Activity of Lytic Polysaccharide Monooxygenases: Evidence for the Formation of a Caged Hydroxyl Radical Intermediate

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