Bjørge Westereng
0000-0002-5141-7231
52 papers found
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Comparison of fungal carbohydrate esterases of family CE16 on artificial and natural substrates
A lytic polysaccharide monooxygenase with broad xyloglucan specificity from the brown-rot fungus Gloeophyllum trabeum and its action on cellulose-xyloglucan complexes
Enzymatic cellulose oxidation is linked to lignin by long-range electron transfer
Modified cellobiohydrolase–cellulose interactions following treatment with lytic polysaccharide monooxygenase CelS2 (ScLPMO10C) observed by QCM-D
A new generation of versatile chromogenic substrates for high-throughput analysis of biomass-degrading enzymes
A New Versatile Microarray-based Method for High Throughput Screening of Carbohydrate-active Enzymes
Characterisation of a novel endo-xyloglucanase (XcXGHA) from Xanthomonas that accommodates a xylosyl-substituted glucose at subsite −1
Discovery of LPMO activity on hemicelluloses shows the importance of oxidative processes in plant cell wall degradation
Extractability and digestibility of plant cell wall polysaccharides during hydrothermal and enzymatic degradation of wheat straw (Triticum aestivum L.)
Trichoderma reesei CE16 acetyl esterase and its role in enzymatic degradation of acetylated hemicellulose
Tracking developmentally regulated post-synthetic processing of homogalacturonan and chitin using reciprocal oligosaccharide probes
Enzymatic oxidation of cellulose is linked to lignin through electron shuttling mechanisms
A C4-oxidizing Lytic Polysaccharide Monooxygenase Cleaving Both Cellulose and Cello-oligosaccharides*
Mode of action of acetylxylan esterases on acetyl glucuronoxylan and acetylated oligosaccharides generated by a GH10 endoxylanase
Generic tools to assess genuine carbohydrate specific effects on in vitro immune modulation exemplified by β-glucans
Efficient separation of oxidized cello-oligosaccharides generated by cellulose degrading lytic polysaccharide monooxygenases
Steam refining as an alternative to steam explosion
Abrupt Temporal Fluctuations in the Chicken Fecal Microbiota Are Explained by Its Gastrointestinal Origin
Novel enzymes for the degradation of cellulose
Comparative analyses reveal potential uses of Brachypodium distachyon as a model for cold stress responses in temperate grasses
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