Discovery and engineering of bifunctional enzymes for lignocellulose degradation: Metagenomic and computational approaches. [PDF]
Goudarzi R +3 more
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Loop Dynamics Mediate Thermal Adaptation of Two Xylanases from Marine Bacteria. [PDF]
Zhuang J +4 more
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Expression of xylanase XynB is synergistically controlled by two two-component systems in <i>Ruminiclostridium cellulolyticum</i>. [PDF]
Zhang W +6 more
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Metagenomic mining unveils a novel GH130 enzyme with exclusive xylanase activity over a wide temperature and pH ranges. [PDF]
Hemeda AA +8 more
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Single-Molecule Imaging of Wood Xylans on Surfaces and Their Interaction with GH11 Xylanase. [PDF]
Schaubeder JB +6 more
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Endogenous glycoside hydrolases reveal foraminiferal capacity to degrade terrestrial and marine polysaccharides. [PDF]
Tanimura MWL +3 more
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Non-Catalytic Domains of Glycoside Hydrolase Family 5 from <i>Paenibacillus curdlanolyticus</i> are Important for Promoting Multifunctional Enzyme Activities and Degradation of Agricultural Residues. [PDF]
Fatmawati NV +9 more
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Identification, heterologous expression, and characterisation of β-1,3-xylanase BcXyn26B from human gut bacterium Bacteroides cellulosilyticus WH2. [PDF]
Hori S, Okazaki F.
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Soluble chromogenic substrates for the assay of endo-1,4-β-xylanases and endo-1,4-β-glucanases
Analytical Biochemistry, 1985New soluble chromogenic substrates were prepared for specific and rapid assays of endo-1,4-beta-xylanases and endo-1,4-beta-glucanases. A soluble beechwood 4-O-methyl-D-glucurono-D-xylan was dyed with Remazol brilliant blue R, and hydroxyethylcellulose was coupled to Ostazin brilliant red H-3B.
Peter Biely
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