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Molecular Immunology|October 24, 2007
Characterization of immunoglobulin variable regions of two human pathogenic monoclonal cryocrystalglobulinsValentina Navazza, Silvia Gabba, Andrea Alfieri, et al.
ACS Catalysis|January 9, 2025
Dehydrogenase versus oxidase function: the interplay between substrate binding and flavin microenvironmentTeresa Benedetta Guerriere, Alessandro Vancheri, Ilaria Ricotti, et al.
Nature Catalysis|December 18, 2019
Deciphering the enzymatic mechanism of sugar ring contraction in UDP-apiose biosynthesisSimone Savino, Annika J E Borg, Alexander Dennig, et al.
The Journal of Biological Chemistry|January 3, 2004
Structural studies on flavin reductase PheA2 reveal binding of NAD in an unusual folded conformation and support novel mechanism of actionRobert H H van den Heuvel, Adrie H Westphal, Albert J R Heck, et al.
Journal of the American Chemical Society|December 25, 2016
Polycyclic Ketone Monooxygenase from the Thermophilic Fungus Thermothelomyces thermophila: A Structurally Distinct Biocatalyst for Bulky SubstratesMaximilian J L J Fürst, Simone Savino, Hanna M Dudek, et al.
The Journal of Biological Chemistry|July 19, 2017
Two tyrosine residues, Tyr-108 and Tyr-503, are responsible for the deprotonation of phenolic substrates in vanillyl-alcohol oxidaseTom A Ewing, Quoc-Thai Nguyen, Robert C Allan, et al.
Biochemistry|July 10, 2002
A covalent modification of NADP+ revealed by the atomic resolution structure of FprA, a Mycobacterium tuberculosis oxidoreductaseRoberto T Bossi, Alessandro Aliverti, Debora Raimondi, et al.
ACS Chemical Biology|June 27, 2020
Rational Redesign of Monoamine Oxidase A into a Dehydrogenase to Probe ROS in Cardiac AgingLuca Giacinto Iacovino, Nicola Manzella, Jessica Resta, et al.
Biorxiv : the Preprint Server for Biology|June 12, 2025
Complete Enzyme Clustering Enhances Coenzyme Q Biosynthesis via Substrate ChannelingDianzhuo Wang, Andrea Gottinger, Jio Jeong, et al.
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