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PMID: 7599116 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Enzymatic characterization of the target for isoniazid in Mycobacterium tuberculosis.

Biochemistry ·Vol. 34 ·No. 26 ·1995-07-04 ·Pages 8235-41

Quémard A, Sacchettini JC, Dessen A, Vilcheze C, Bittman R, Jacobs WR, Blanchard JS

Abstract

The inhA gene has been recently shown to encode a common protein target for isoniazid and ethionamide action in Mycobacterium tuberculosis. In this paper, we demonstrate that the M. tuberculosis InhA protein catalyzes the NADH-specific reduction of 2-trans-enoyl-ACP, essential for fatty acid elongation. This enzyme preferentially reduces long-chain substrates (12-24 carbons), consistent with its involvement in mycolic acid biosynthesis. Steady-state kinetic studies showed that the two substrates bind to InhA via a sequential kinetic mechanism, with the preferred ordered addition of NADH and the enoyl substrate. The chemical mechanism involves stereospecific hydride transfer of the 4S hydrogen of NADH to the C3 position of the 2-trans-enoyl substrate, followed by protonation at C2 of an enzyme-stabilized enolate intermediate. Kinetic and microcalorimetric analysis demonstrates that the binding of NADH to the S94A mutant InhA, known to confer resistance to both isoniazid and ethionamide, is altered. This difference can account for the isoniazid-resistance phenotype, with the formation of a binary InhA-NADH complex required for drug binding. Isoniazid binding to either the wild-type or S94A mutant InhA could not be detected by titration microcalorimetry, suggesting that this compound is a prodrug, which must be converted to its active form.

MeSH Terms
Acyl Coenzyme A/metabolism Bacterial Proteins/chemistry,isolation & purification,metabolism Binding Sites Calorimetry Cloning, Molecular Gene Expression Genes, Bacterial Isoniazid/pharmacology Kinetics Mass Spectrometry Models, Molecular Mycobacterium tuberculosis/drug effects,genetics,metabolism NAD/metabolism Oxidoreductases Polymerase Chain Reaction Protein Structure, Secondary Recombinant Proteins/chemistry,isolation & purification,metabolism Substrate Specificity
Chemicals
Acyl Coenzyme A Bacterial Proteins Recombinant Proteins NAD Oxidoreductases InhA protein, Mycobacterium Isoniazid
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Quémard A
Department of Biochemistry, Howard Hughes Medical Institute, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Sacchettini J C
Dessen A
Vilcheze C
Bittman R
Jacobs W R
Blanchard J S
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
1995-07-04
Pages
8235-41
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Grants
NIAID NIH HHS · AI33696 · United States
NIAID NIH HHS · AI36849 · United States
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