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PMID: 11744691 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Zinc is a potent inhibitor of thiol oxidoreductase activity and stimulates reactive oxygen species production by lipoamide dehydrogenase.

The Journal of biological chemistry ·Vol. 277 ·No. 12 ·2002-03-22 ·Pages 10064-72

Gazaryan IG, Krasnikov BF, Ashby GA, Thorneley RN, Kristal BS, Brown AM

Abstract

Submicromolar zinc inhibits alpha-ketoglutarate-dependent mitochondrial respiration. This was attributed to inhibition of the alpha-ketoglutarate dehydrogenase complex (Brown, A. M., Kristal, B. S., Effron, M. S., Shestopalov, A. I., Ullucci, P. A., Sheu, K.-F. R., Blass, J. P., and Cooper, A. J. L. (2000) J. Biol. Chem. 275, 13441-13447). Lipoamide dehydrogenase, a component of the alpha-ketoglutarate dehydrogenase complex and two other mitochondrial complexes, catalyzes the transfer of reducing equivalents from the bound dihydrolipoate of the neighboring dihydrolipoamide acyltransferase subunit to NAD(+). This reversible reaction involves two reaction centers: a thiol pair, which accepts electrons from dihydrolipoate, and a non-covalently bound FAD moiety, which transfers electrons to NAD(+). The lipoamide dehydrogenase reaction catalyzed by the purified pig heart enzyme is strongly inhibited by Zn(2+) (K(i) approximately 0.15 microm) in both directions. Steady-state kinetic studies revealed that Zn(2+) competes with oxidized lipoamide for the two-electron-reduced enzyme. Interaction of Zn(2+) with the two-electron-reduced enzyme was directly detected in anaerobic stopped-flow experiments. Lipoamide dehydrogenase also catalyzes NADH oxidation by oxygen, yielding hydrogen peroxide as the major product and superoxide radical as a minor product. Zn(2+) accelerates the oxidase reaction up to 5-fold with an activation constant of 0.09 +/- 0.02 microm. Activation is a consequence of Zn(2+) binding to the reduced catalytic thiols, which prevents delocalization of the reducing equivalents between catalytic disulfide and FAD. A kinetic scheme that satisfactorily describes the observed effects has been developed and applied to determine a number of enzyme kinetic parameters in the oxidase reaction. The distinct effects of Zn(2+) on different LADH activities represent a novel example of a reversible switch in enzyme specificity that is modulated by metal ion binding. These results suggest that Zn(2+) can interfere with mitochondrial antioxidant production and may also stimulate production of reactive oxygen species by a novel mechanism.

MeSH Terms
Animals Dihydrolipoamide Dehydrogenase/metabolism Disulfides Dose-Response Relationship, Drug Kinetics Models, Chemical Myocardium/enzymology NAD/metabolism Oxygen/metabolism Oxygen Consumption Protein Binding Protein Disulfide Reductase (Glutathione)/chemistry,metabolism Reactive Oxygen Species Substrate Specificity Swine Time Factors Zinc/pharmacology,physiology
Chemicals
Disulfides Reactive Oxygen Species NAD Dihydrolipoamide Dehydrogenase Protein Disulfide Reductase (Glutathione) Zinc Oxygen
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Gazaryan Irina G
Burke Medical Research Institute, Weill Medical College of Cornell University, White Plains, New York 10605, USA.
Krasnikov Boris F
Ashby Gillian A
Thorneley Roger N F
Kristal Bruce S
Brown Abraham M
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-03-22
Epub
2001-00-13
Pages
10064-72
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NINDS NIH HHS · R01 NS038741 · United States
NINDS NIH HHS · NS38741 · United States
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