This project addresses the challenge of converting lignocellulosic biomass, e.g. non-edible agro-industrial wastes and wood, into sustainable biofuels, green chemicals and materials via enzyme technology. A class of microbial enzymes termed lytic polysaccharide monooxygenases (LPMOs) plays a central role in the depolymerization of polysaccharides that compose lignocellulosic biomass, such as cellulose, in Nature and in industrial settings. However, the exact mechanism employed by LPMOs to depolymerize plant polysaccharides is still not fully understood. New knowledge on the LPMO reaction mechanisms and its interplay with other oxidative enzymes involved in the degradation of plant biomass is required to provide the basis for the development of efficient enzyme technologies for lignocellulosic biomass refining. Enzyme-based biorefineries will have important role in the transition from a fossil-based economy to a more sustainable biomass-based economy. The overall objective of this research project is to contribute with a more detailed understanding of the network of enzyme-catalyzed redox reactions involved in lignocellulose degradation by fungi, building on the hypothesis that such understanding can be used to design powerful enzyme systems for efficient biomass conversion into bioproducts.