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1 s alcohol oxidation mediated by Cu/TEMPO and galactose oxidase.
2 he reductive and oxidative half-reactions of galactose oxidase.
3 ole parameters are similar to those found in galactose oxidase.
4 that found in another fungal metalloenzyme, galactose oxidase.
5 complexed cysteinyltyrosyl radical of fungal galactose oxidase.
6 ation of the tyrosine cofactor in the enzyme galactose oxidase.
7 an aldehyde at C-6 of residue 6 or 6' using galactose oxidase, a dansyl ethylenediamine acceptor flu
9 -[14C]GalA in the presence of high levels of galactose oxidase and catalase, at prolonged incubation
10 mes supports structural correlations between galactose oxidase and glyoxal oxidase, clearly identifyi
13 onal models of the mononuclear copper enzyme galactose oxidase are presented that catalytically oxidi
14 from glycerol for the aldol reaction, using galactose oxidase catalyzed oxidation of glycerol in the
15 pa quinone, tryptophan trytophylquinone, the galactose oxidase cofactor, and the enzymes harboring th
16 reaction profile for substrate oxidation by galactose oxidase, consisting of three components (hydro
18 e oxidation catalyzed by glucose oxidase and galactose oxidase deactivate nitrate reductase and must
19 Gbeta subunits and the kelch repeat protein galactose oxidase fold into strikingly similar seven-bla
21 igated the biogenesis of cofactor-containing galactose oxidase from pregalactose oxidase lacking the
28 been used for the generation of variants of galactose oxidase (GOase) that can selectively oxidize g
29 o the metal center of a redox metalloenzyme, galactose oxidase (GOase), by coordination of a linker a
31 290, a second-coordination sphere residue in galactose oxidase, has been investigated via steady-stat
36 enzymes, including prostaglandin H synthase, galactose oxidase, ribonucleotide reductase, and photosy
38 hitecture to the galactose-binding domain of galactose oxidase, the coagulation factor C2 domain and
39 region of the molecule, whose counterpart in galactose oxidase, the coagulation factor C2 domains and
40 ubstrate deuterium kinetic isotope effect on galactose oxidase turnover whose magnitude varies system
42 were analyzed: glucose oxidase with glucose, galactose oxidase with galactose, and pyranose 2-oxidase
43 pper motif has previously been found only in galactose oxidase, with which glyoxal oxidase shares man
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