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Over ons Praktische zaken Waar vindt u ons prof. dr. ir. M.W. (Marco) Fraaije

Publicaties

Asymmetric Sulfoxidations Catalyzed by Bacterial Flavin-Containing Monooxygenases

Biocatalytic Oxidative Amination of para-Substituted Phenols

Biochemical, kinetic, and structural characterization of a Bacillus tequilensis nitroreductase

Biosynthetic Strategies of Berberine Bridge Enzyme-like Flavoprotein Oxidases toward Structural Diversification in Natural Product Biosynthesis

Discovery and biochemical characterization of thermostable glycerol oxidases

Discovery and structural characterization of a thermostable bacterial monoamine oxidase

Discovery of a new class of bacterial heme-containing CC cleaving oxygenases

Equipping Saccharomyces cerevisiae with an Additional Redox Cofactor Allows F 420-Dependent Bioconversions in Yeast.

Evolution of the catalytic mechanism at the dawn of the Baeyer-Villiger monooxygenases

Evolution, Structure, and Drug-Metabolising Activity of Mammalian Prenylcysteine Oxidases

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Pers/media

Enzymen bouwen voor een groenere chemie

Creating enzymes for sustainable chemistry

Enzymen bouwen voor een groenere chemie

Negen Marie Skłodowska-Curie Doctoral Networks voor de Rijksuniversiteit Groningen

Nine Marie Skłodowska-Curie Doctoral Networks for the University of Groningen

Enzyme engineering makes blue denim greener

Enzyme engineering makes blue denim greener

L’ingénierie enzymatique rend le denim bleu plus vert

Enzyme engineering makes blue denim greener

Prof. Marco Fraaije receives NWO Perspectief funding for biotech research

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