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Iucrj|November 15, 2016
Lytic polysaccharide monooxygenases: a crystallographer's view on a new class of biomass-degrading enzymesKristian E H Frandsen, Leila Lo LeggioBritish Heart Journal|February 1, 1983
Transience of left ventricular thrombosisE H Frandsen, H Egeblad, S A MortensenCytoskeleton (Hoboken, N.J.)|August 14, 2023
The role of intrinsic disorder in binding of plant microtubule-associated proteins to the cytoskeletonJordy Perez Gonzalez, Kristian E H Frandsen, Christopher KestenCarbohydrate Research|April 3, 2017
Unliganded and substrate bound structures of the cellooligosaccharide active lytic polysaccharide monooxygenase LsAA9A at low pHKristian E H Frandsen, Jens-Christian N Poulsen, Tobias Tandrup, et al.Molecular Plant|December 24, 2022
Cellulose synthesis in land plantsGustav B Pedersen, Leonard Blaschek, Kristian E H Frandsen, et al.Biochemical Society Transactions|November 2, 2018
Recent insights into lytic polysaccharide monooxygenases (LPMOs)Tobias Tandrup, Kristian E H Frandsen, Katja S Johansen, et al.Acta Crystallographica. Section D, Structural Biology|January 4, 2017
Learning from oligosaccharide soaks of crystals of an AA13 lytic polysaccharide monooxygenase: crystal packing, ligand binding and active-site disorderKristian E H Frandsen, Jens Christian Navarro Poulsen, Morten Tovborg, et al.The Journal of Biological Chemistry|November 17, 2020
Identification of the molecular determinants driving the substrate specificity of fungal lytic polysaccharide monooxygenases (LPMOs)Kristian E H Frandsen, Mireille Haon, Sacha Grisel, et al.Plant Physiology|October 12, 2023
Phosphate starvation regulates cellulose synthesis to modify root growthGhazanfar Abbas Khan, Arka Dutta, Allison van de Meene, et al.The FEBS Journal|May 27, 2025
Anions and citrate inhibit LsAA9A, a lytic polysaccharide monooxygenase (LPMO)Valerio Di Domenico, Yusuf Theibich, Søren Brander, et al.Pageof 2