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PreviewIssue DateTitleAuthor(s)
1999A single limit dextrinase gene is expressed both in the developing endosperm and in germinated grains of barleyBurton, R.; Zhang, X.Q.; Hrmova, M.; Fincher, G.
2023Molecular mechanisms of processive glycoside hydrolases underline catalytic pragmatismHrmova, M.; Schwerdt, J.G.
2022The evolutionary advantage of an aromatic clamp in plant family 3 glycoside exo-hydrolasesLuang, S.; Fernández-Luengo, X.; Nin-Hill, A.; Streltsov, V.A.; Schwerdt, J.G.; Alonso-Gil, S.; Ketudat Cairns, J.R.; Pradeau, S.; Fort, S.; Maréchal, J.-D.; Masgrau, L.; Rovira, C.; Hrmova, M.
2000Comparative modeling of the three-dimensional structures of family 3 glycoside hydrolasesHarvey, A.; Hrmova, M.; De Gori, R.; Varghese, J.; Fincher, G.
2013Structural analysis and insights into the glycon specificity of the rice GH1 Os7BGlu26 β-D-mannosidaseTankrathok, A.; Iglesias-Ferna, J.; Luang, S.; Robinson, R.; Kimura, A.; Rovira, C.; Hrmova, M.; Cairns, J.
2002Structural basis for broad substrate specificity in higher plant beta-D-glucan glucohydrolasesHrmova, M.; De Gori, R.; Smith, B.; Fairweather, J.; Driguez, H.; Varghese, J.; Fincher, G.
2003Bifunctional family 3 glycoside hydrolases from barley with alpha-L-arabinofuranosidase and beta-D-xylosidase activity - Characterization, primary structures, and COOH-terminal processingLee, R.; Hrmova, M.; Burton, R.; Lahnstein, J.; Fincher, G.
2002Mutated Barley (1,3)-beta-D-Glucan Endohydrolases Synthesize Crystalline (1,3)-beta-D-GlucansHrmova, M.; Imai, T.; Rutten, S.; Fairweather, J.; Pelosi, L.; Bulone, V.; Driguez, H.; Fincher, G.