INTRAMOLECULAR ELECTRON-TRANSFER RATE BETWEEN ACTIVE-SITE COPPER AND TOPA QUINONE IN PEA SEEDLING AMINE OXIDASE

Citation
Pn. Turowski et al., INTRAMOLECULAR ELECTRON-TRANSFER RATE BETWEEN ACTIVE-SITE COPPER AND TOPA QUINONE IN PEA SEEDLING AMINE OXIDASE, The Journal of biological chemistry, 268(24), 1993, pp. 17680-17682
Citations number
19
Categorie Soggetti
Biology
ISSN journal
00219258
Volume
268
Issue
24
Year of publication
1993
Pages
17680 - 17682
Database
ISI
SICI code
0021-9258(1993)268:24<17680:IERBAC>2.0.ZU;2-T
Abstract
The equilibrium between the two substrate-reduced forms of pea seedlin g amine oxidase, one containing Cu(II) and reduced 3-(2,4,5-trihydroxy phenyl)-L-alanine (topa) cofactor and one containing Cu(I) and topa se miquinone, was investigated by visible spectroscopy as a function of t emperature. To determine the rate of interconversion between the two s pecies, temperature jump relaxation studies were performed on the subs trate-reduced enzyme near room temperature. The yellow radical species was found to approach its equilibrium concentration with a maximum ra te constant of 43,000 +/- 3,000 s-1. This rapid equilibration is attri buted to intramolecular electron transfer between copper and topa. The data indicate that the Cu(I)/topa(SQ) species is a kinetically compet ent intermediate in the reaction of amine oxidases with substrates. Fu rthermore, the extremely rapid electron transfer rate (k(ET) congruent -to 20,000 s-1) suggests that the topa cofactor is in close proximity to the copper atom.