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PMID: 18171027 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Mechanism of 4-HNE mediated inhibition of hDDAH-1: implications in no regulation.

Biochemistry ·Vol. 47 ·No. 6 ·2008-02-12 ·Pages 1819-26

Forbes SP, Druhan LJ, Guzman JE, Parinandi N, Zhang L, Green-Church KB, Cardounel AJ

Abstract

Nitric oxide synthase is inhibited by NG-methylated derivatives of arginine whose cellular levels are controlled by dimethylarginine dimethylamino-hydrolase (DDAH). DDAH-1 is a Zn(II)-containing enzyme that through hydrolysis of methylated l-arginines regulates the activity of NOS. Herein, we report the kinetic properties of hDDAH-1 and its redox-dependent regulation. Kinetic studies using recombinant enzyme demonstrated Km values of 68.7 and 53.6 microM and Vmax values of 356 and 154 nmols/mg/min for ADMA and L-NMMA, respectively. This enzymatic activity was selective for free ADMA and L-NMMA and was incapable of hydrolyzing peptide incorporated methylarginines. Subsequent studies performed to determine the effects of reactive oxygen and reactive nitrogen species on DDAH activity demonstrated that low level oxidant exposure had little effect on enzyme activity and that concentrations approaching >or=100 microM were needed to confer significant inhibition of DDAH activity. However, exposure of DDAH to the lipid oxidation product, 4-HNE, dose-dependently inhibited DDAH activity with 15% inhibition observed at 10 microM, 50% inhibition at 50 microM, and complete inhibition at 500 microM. Mass spectrometry analysis demonstrated that the mechanism of inhibition resulted from the formation of Michael adducts on His 173, which lies within the active site catalytic triad of hDDAH-1. These studies were performed with pathophysiologicaly relevant concentrations of this lipid peroxidation product and suggest that DDAH activity can be impaired under conditions of increased oxidative stress. Because DDAH is the primary enzyme involved in methylarginine metabolism, the loss of activity of this enzyme would result in impaired NOS activity and reduced NO bioavailability.

MeSH Terms
Aldehydes/pharmacology Amidohydrolases/antagonists & inhibitors,chemistry,isolation & purification Amino Acid Sequence Electrophoresis, Polyacrylamide Gel Enzyme Inhibitors/pharmacology Hydrogen-Ion Concentration Molecular Sequence Data Oxidants/pharmacology Proteome Tandem Mass Spectrometry
Chemicals
Aldehydes Enzyme Inhibitors Oxidants Proteome Amidohydrolases dimethylargininase 4-hydroxy-2-nonenal
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Forbes Scott P
Department of Physiology and Functional Genomics, The University of Florida College of Medicine, Gainesville, Florida 32610, USA.
Druhan Lawrence J
Guzman Jorge E
Parinandi Narasimham
Zhang Liwen
Green-Church Kari B
Cardounel Arturo J
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
2008-02-12
Epub
2008-00-03
Pages
1819-26
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Grants
NHLBI NIH HHS · HL081734 · United States
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