Andrea Mattevi

Affiliations: 
Biology and Biotechnology University of Pavia, Pavia, PV, Italy 
Area:
Flavoenzymes
Website:
http://www.unipv.it/biocry/
Google:
"Andrea Mattevi"
Bio:

http://hdl.handle.net/11370/00352817-6f4a-40b1-a900-827f5b1029e6

Parents

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Martino Bolognesi grad student University of Pavia
Wilhelmus G.J. Hol grad student 1992 RUG (Chemistry Tree)
 (Structure of the cubic core and the lipoamide dehydrogenase component of the pyruvate dehydrogenase complex.)
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Publications

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Martin C, Binda C, Fraaije MW, et al. (2020) The multipurpose family of flavoprotein oxidases. The Enzymes. 47: 63-86
Oosterheert W, Reis J, Gros P, et al. (2020) An Elegant Four-Helical Fold in NOX and STEAP Enzymes Facilitates Electron Transport across Biomembranes-Similar Vehicle, Different Destination. Accounts of Chemical Research
Iacovino LG, Savino S, Borg AJE, et al. (2020) Crystallographic snapshots of UDP-glucuronic acid 4-epimeraseligand binding, rotation and reduction. The Journal of Biological Chemistry
Iacovino LG, Manzella N, Resta J, et al. (2020) Rational re-design of Monoamine Oxidase A into a dehydrogenase to probe ROS in cardiac ageing. Acs Chemical Biology
Iacovino LG, Reis J, Mai A, et al. (2020) Diphenylene iodonium is a non-covalent MAO inhibitor: a biochemical and structural analysis. Chemmedchem
Ernst S, Rovida S, Mattevi A, et al. (2020) Photoinduced monooxygenation involving NAD(P)H-FAD sequential single-electron transfer. Nature Communications. 11: 2600
Aalbers FS, Fürst MJ, Rovida S, et al. (2020) Approaching boiling point stability of an alcohol dehydrogenase through computationally-guided enzyme engineering. Elife. 9
Reis J, Massari M, Marchese S, et al. (2020) A closer look into NADPH oxidase inhibitors: Validation and insight into their mechanism of action. Redox Biology. 32: 101466
Mai A, Fioravanti R, Romanelli A, et al. (2020) Tranylcypromine-based LSD1 Inhibitors: Structure-Activity Relationship, Antiproliferative Effect in Leukemias and Gene Target Modulation. Chemmedchem
Nicoll CR, Bailleul G, Fiorentini F, et al. (2019) Ancestral-sequence reconstruction unveils the structural basis of function in mammalian FMOs. Nature Structural & Molecular Biology. 27: 14-24
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