volume 131 issue 13 pages 4657-4663

Galactose Oxidase as a Model for Reactivity at a Copper Superoxide Center

Publication typeJournal Article
Publication date2009-03-16
scimago Q1
wos Q1
SJR5.554
CiteScore22.5
Impact factor15.6
ISSN00027863, 15205126
PubMed ID:  19290629
General Chemistry
Catalysis
Biochemistry
Colloid and Surface Chemistry
Abstract
The mononuclear copper enzyme, galactose oxidase, has been investigated under steady-state conditions via O(2)-consumption assays using 1-O-methyl-alpha-D-galactopyranoside as the sugar substrate to produce an aldehyde at the C-6 position. The rate-determining step of the oxidative half-reaction was probed through the measurement of substrate and solvent deuterium and O-18 isotope effects on k(cat)/K(m)(O(2)). The reaction conforms to a ping-pong mechanism with the kinetic parameters for the reductive half, k(cat)/K(m)(S) = 8.3 x 10(3) M(-1) s(-1) at 10 degrees C and pH 7.0, comparing favorably to literature values. The oxidative half-reaction yielded a value of k(cat)/K(m)(O(2)) = 2.5 x 10(6) M(-1) s(-1). A substrate deuterium isotope effect of 32 was measured for the k(cat)/K(m)(S), while a smaller, but significant value of 1.6-1.9 was observed on k(cat)/K(m)(O(2)). O-18 isotope effects of 1.0185 with either protiated or deuterated sugar, together with the absence of any solvent isotope effect, lead to the conclusion that hydrogen atom transfer from reduced cofactor to a Cu(II)-superoxo intermediate is fully rate-determining for k(cat)/K(m)(O(2)). The measured O-18 isotope effects provide corroborative evidence for the reactive superoxo species in the dopamine beta-monooxygenase/peptidylglycine alpha-hydroxylating monooxygenase family, as well as providing a frame of reference for copper-superoxo reactivity. The combination of solvent and substrate deuterium isotope effects rules out solvent deuterium exchange into reduced enzyme as the origin of the relatively small substrate deuterium isotope effect on k(cat)/K(m)(O(2)). These data indicate fundamental differences in the hydrogen transfer step from the carbon of substrate vs the oxygen of reduced cofactor during the reductive and oxidative half-reactions of galactose oxidase.
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Humphreys K. J. et al. Galactose Oxidase as a Model for Reactivity at a Copper Superoxide Center // Journal of the American Chemical Society. 2009. Vol. 131. No. 13. pp. 4657-4663.
GOST all authors (up to 50) Copy
Humphreys K. J., Mirica L. M., Wang Y., Klinman J. P. Galactose Oxidase as a Model for Reactivity at a Copper Superoxide Center // Journal of the American Chemical Society. 2009. Vol. 131. No. 13. pp. 4657-4663.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/ja807963e
UR - https://doi.org/10.1021/ja807963e
TI - Galactose Oxidase as a Model for Reactivity at a Copper Superoxide Center
T2 - Journal of the American Chemical Society
AU - Humphreys, Kristi J
AU - Mirica, Liviu M.
AU - Wang, Yi
AU - Klinman, Judith P.
PY - 2009
DA - 2009/03/16
PB - American Chemical Society (ACS)
SP - 4657-4663
IS - 13
VL - 131
PMID - 19290629
SN - 0002-7863
SN - 1520-5126
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2009_Humphreys,
author = {Kristi J Humphreys and Liviu M. Mirica and Yi Wang and Judith P. Klinman},
title = {Galactose Oxidase as a Model for Reactivity at a Copper Superoxide Center},
journal = {Journal of the American Chemical Society},
year = {2009},
volume = {131},
publisher = {American Chemical Society (ACS)},
month = {mar},
url = {https://doi.org/10.1021/ja807963e},
number = {13},
pages = {4657--4663},
doi = {10.1021/ja807963e}
}
MLA
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MLA Copy
Humphreys, Kristi J., et al. “Galactose Oxidase as a Model for Reactivity at a Copper Superoxide Center.” Journal of the American Chemical Society, vol. 131, no. 13, Mar. 2009, pp. 4657-4663. https://doi.org/10.1021/ja807963e.