Understanding the structural basis for substrate and inhibitor recognition in eukaryotic GH11 xylanases
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Evidence That GH115 -Glucuronidase Activity, Which Is Required to Degrade Plant Biomass, Is Dependent on Conformational FlexibilityX-ray crystallographic studies of family 11 xylanase Michaelis and product complexes: implications for the catalytic mechanismEnzymatic deconstruction of xylan for biofuel productionAbsence of branches from xylan in Arabidopsis gux mutants reveals potential for simplification of lignocellulosic biomassCrystal structure of Talaromyces cellulolyticus (formerly known as Acremonium cellulolyticus) GH family 11 xylanase.Characterization of a xylanase-producing Cellvibrio mixtus strain J3-8 and its genome analysis.Probing the role of sigma π interaction and energetics in the catalytic efficiency of endo-1,4-β-xylanaseStructural determinants of the substrate specificities of xylanases from different glycoside hydrolase families.Cloning and enzymatic characterization of four thermostable fungal endo-1,4-β-xylanases.Thumb-loops up for catalysis: a structure/function investigation of a functional loop movement in a GH11 xylanase.The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated XylansPurification and properties of a thermostable xylanase GH 11 from Penicillium occitanis Pol6.A GH115 α-glucuronidase from Schizophyllum commune contributes to the synergistic enzymatic deconstruction of softwood glucuronoarabinoxylan.Targeted metatranscriptomics of compost-derived consortia reveals a GH11 exerting an unusual exo-1,4-β-xylanase activity.Development of hemicellulolytic enzyme mixtures for plant biomass deconstruction on target biotechnological applications.Regular Motifs in Xylan Modulate Molecular Flexibility and Interactions with Cellulose Surfaces.Function, distribution, and annotation of characterized cellulases, xylanases, and chitinases from CAZy.An efficient arabinoxylan-debranching α-L-arabinofuranosidase of family GH62 from Aspergillus nidulans contains a secondary carbohydrate binding site.GUX1 and GUX2 glucuronyltransferases decorate distinct domains of glucuronoxylan with different substitution patterns.Shifting the optimum pH of Bacillus circulans xylanase towards acidic side by introducing arginine
P2860
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P2860
Understanding the structural basis for substrate and inhibitor recognition in eukaryotic GH11 xylanases
description
2008 nî lūn-bûn
@nan
2008 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2008 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
name
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@ast
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@en
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@nl
type
label
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@ast
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@en
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@nl
prefLabel
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@ast
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@en
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@nl
P2093
P50
P3181
P1476
Understanding the structural b ...... n in eukaryotic GH11 xylanases
@en
P2093
David P Weiner
Harry J Gilbert
Maria Vardakou
Paul Christakopoulos
Richard J Lewis
P304
P3181
P356
10.1016/J.JMB.2007.11.007
P407
P577
2008-02-01T00:00:00Z