Engineered thermostable fungal Cel6A and Cel7A cellobiohydrolases hydrolyze cellulose efficiently at elevated temperatures
about
Systems biology of the structural proteomeImproving the Stability and Catalyst Lifetime of the Halogenase RebH By Directed EvolutionEnhancing thermostability and the structural characterization of Microbacterium saccharophilum K-1 β-fructofuranosidaseStructure and biocatalytic scope of thermophilic flavin-dependent halogenase and flavin reductase enzymesSemirational Directed Evolution of Loop Regions in Aspergillus japonicus β-Fructofuranosidase for Improved Fructooligosaccharide ProductionEngineering a novel glucose-tolerant β-glucosidase as supplementation to enhance the hydrolysis of sugarcane bagasse at high glucose concentrationHigh-throughput analysis and protein engineering using microcapillary arrays.Exploring the Mechanism Responsible for Cellulase Thermostability by Structure-Guided Recombination.Fuelling the future: microbial engineering for the production of sustainable biofuels.Development of simple random mutagenesis protocol for the protein expression system in Pichia pastorisTemperature Effects on Kinetic Parameters and Substrate Affinity of Cel7A Cellobiohydrolases.Structural and dynamic evolution of the amphipathic N-terminus diversifies enzyme thermostability in the glycoside hydrolase family 12.Functional characterization of the native swollenin from Trichoderma reesei: study of its possible role as C1 factor of enzymatic lignocellulose conversion.Engineered thermostable fungal cellulases exhibit efficient synergistic cellulose hydrolysis at elevated temperatures.Identification of novel biomass-degrading enzymes from genomic dark matter: Populating genomic sequence space with functional annotation.Stabilization of the Reductase Domain in the Catalytically Self-Sufficient Cytochrome P450BM3 via Consensus-Guided Mutagenesis.Engineering the conserved and noncatalytic residues of a thermostable β-1,4-endoglucanase to improve specific activity and thermostability.Improved thermostability of a metagenomic glucose-tolerant β-glycosidase based on its X-ray crystal structure.A Newly Isolated Penicillium oxalicum 16 Cellulase with High Efficient Synergism and High Tolerance of Monosaccharide.Engineering enhanced cellobiohydrolase activity.An synthetic biology platform for emerging industrial biomanufacturing: Bottom-up pathway designBioprospecting thermostable cellulosomes for efficient biofuel production from lignocellulosic biomass
P2860
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P2860
Engineered thermostable fungal Cel6A and Cel7A cellobiohydrolases hydrolyze cellulose efficiently at elevated temperatures
description
2013 nî lūn-bûn
@nan
2013 թուականի Յուլիսին հրատարակուած գիտական յօդուած
@hyw
2013 թվականի հուլիսին հրատարակված գիտական հոդված
@hy
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
name
Engineered thermostable fungal ...... ently at elevated temperatures
@ast
Engineered thermostable fungal ...... ently at elevated temperatures
@en
Engineered thermostable fungal ...... ently at elevated temperatures
@nl
type
label
Engineered thermostable fungal ...... ently at elevated temperatures
@ast
Engineered thermostable fungal ...... ently at elevated temperatures
@en
Engineered thermostable fungal ...... ently at elevated temperatures
@nl
prefLabel
Engineered thermostable fungal ...... ently at elevated temperatures
@ast
Engineered thermostable fungal ...... ently at elevated temperatures
@en
Engineered thermostable fungal ...... ently at elevated temperatures
@nl
P2860
P3181
P356
P1476
Engineered thermostable fungal ...... ently at elevated temperatures
@en
P2093
P2860
P304
P3181
P356
10.1002/BIT.24864
P577
2013-07-01T00:00:00Z