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PMID: 18625705 Published · ppublish English Journal Article

Diarylquinolines are bactericidal for dormant mycobacteria as a result of disturbed ATP homeostasis.

The Journal of biological chemistry ·Vol. 283 ·No. 37 ·2008-09-12 ·Pages 25273-25280

Koul A, Vranckx L, Dendouga N, Balemans W, Van den Wyngaert I, Vergauwen K, Göhlmann HWH, Willebrords R, Poncelet A, Guillemont J, Bald D, Andries K

Abstract

An estimated one-third of the world population is latently infected with Mycobacterium tuberculosis. These nonreplicating, dormant bacilli are tolerant to conventional anti-tuberculosis drugs, such as isoniazid. We recently identified diarylquinoline R207910 (also called TMC207) as an inhibitor of ATP synthase with a remarkable activity against replicating mycobacteria. In the present study, we show that R207910 kills dormant bacilli as effectively as aerobically grown bacilli with the same target specificity. Despite a transcriptional down-regulation of the ATP synthase operon and significantly lower cellular ATP levels, we show that dormant mycobacteria do possess residual ATP synthase enzymatic activity. This activity is blocked by nanomolar concentrations of R207910, thereby further reducing ATP levels and causing a pronounced bactericidal effect. We conclude that this residual ATP synthase activity is indispensable for the survival of dormant mycobacteria, making it a promising drug target to tackle dormant infections. The unique dual bactericidal activity of diarylquinolines on dormant as well as replicating bacterial subpopulations distinguishes them entirely from the current anti-tuberculosis drugs and underlines the potential of R207910 to shorten tuberculosis treatment.

MeSH Terms
Adenosine Triphosphate/chemistry Antitubercular Agents/pharmacology Gene Expression Regulation, Bacterial Homeostasis Mitochondrial Proton-Translocating ATPases/chemistry Models, Biological Mycobacterium/metabolism Mycobacterium bovis/drug effects,metabolism Mycobacterium smegmatis/drug effects,metabolism Mycobacterium tuberculosis/drug effects,metabolism Nitric Oxide/chemistry Oxygen/chemistry Quinolines/pharmacology RNA, Messenger/metabolism Time Factors
Chemicals
Antitubercular Agents Quinolines RNA, Messenger Nitric Oxide Adenosine Triphosphate Mitochondrial Proton-Translocating ATPases Oxygen
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Koul Anil
Department of Antimicrobial Research, B-2340 Beerse, Belgium. Electronic address: akoul@prdbe.jnj.com.
Vranckx Luc
Department of Antimicrobial Research, B-2340 Beerse, Belgium.
Dendouga Najoua
Department of Antimicrobial Research, B-2340 Beerse, Belgium.
Balemans Wendy
Department of Antimicrobial Research, B-2340 Beerse, Belgium.
Van den Wyngaert Ilse
Department of Functional Genomics, Johnson & Johnson, Turnhoutseweg 30, B-2340 Beerse, Belgium.
Vergauwen Karen
Department of Antimicrobial Research, B-2340 Beerse, Belgium.
Göhlmann Hinrich W H
Department of Functional Genomics, Johnson & Johnson, Turnhoutseweg 30, B-2340 Beerse, Belgium.
Willebrords Rudy
Department of Antimicrobial Research, B-2340 Beerse, Belgium.
Poncelet Alain
Pharmaceutical Research and Development, Tibotec NV, Johnson & Johnson, Campus de Maigremont-BP615, F-27106 Val de Reuil Cedex, France.
Guillemont Jerome
Pharmaceutical Research and Development, Tibotec NV, Johnson & Johnson, Campus de Maigremont-BP615, F-27106 Val de Reuil Cedex, France.
Bald Dirk
Department of Structural Biology, VU University Amsterdam, De Boelelaan 1085, 1081HV Amsterdam, The Netherlands.
Andries Koen
Department of Antimicrobial Research, B-2340 Beerse, Belgium.
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2008-09-12
Epub
2008-00-14
Pages
25273-25280
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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