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Biochemical Society Transactions|February 11, 2016
Discovery and industrial applications of lytic polysaccharide mono-oxygenasesKatja S JohansenBiotechnology for Biofuels|May 17, 2011
Low temperature lignocellulose pretreatment: effects and interactions of pretreatment pH are critical for maximizing enzymatic monosaccharide yields from wheat strawMads Pedersen, Katja S Johansen, Anne S MeyerFrontiers in Microbiology|March 31, 2023
A fast, sensitive and fluorescent LPMO activity assayJohan Ø Ipsen, Katja S Johansen, Søren BranderPlos One|September 19, 2014
The mechanisms of plant cell wall deconstruction during enzymatic hydrolysisLisbeth G Thygesen, Emil E Thybring, Katja S Johansen, et al.AMB Express|December 3, 2015
The binding of cellulase variants to dislocations: a semi-quantitative analysis based on CLSM (confocal laser scanning microscopy) imagesBudi J Hidayat, Carmen Weisskopf, Claus Felby, et al.Biotechnology for Biofuels|July 16, 2014
Ensiling and hydrothermal pretreatment of grass: consequences for enzymatic biomass conversion and total monosaccharide yieldsMorten Ambye-Jensen, Katja S Johansen, Thomas Didion, et al.Biotechnology Letters|November 7, 2015
Catalase improves saccharification of lignocellulose by reducing lytic polysaccharide monooxygenase-associated enzyme inactivationBrian R Scott, Hong Zhi Huang, Jesper Frickman, et al.Biochemical Society Transactions|January 15, 2021
Lytic polysaccharide monooxygenases and other histidine-brace copper proteins: structure, oxygen activation and biotechnological applicationsJohan Ø Ipsen, Magnus Hallas-Møller, Søren Brander, et al.Journal of Colloid and Interface Science|March 9, 2005
Enzymatic degradation of model cellulose filmsJonny Eriksson, Martin Malmsten, Fredrik Tiberg, et al.Pageof 4