| Literature DB >> 25427196 |
João Neres1,2, Ruben C Hartkoorn1,2, Laurent R Chiarelli1,3, Ramakrishna Gadupudi4,5, Maria Rosalia Pasca1,3, Giorgia Mori1,3, Alberto Venturelli4, Svetlana Savina1,6, Vadim Makarov1,6, Gaelle S Kolly1,2, Elisabetta Molteni1,3, Claudia Binda1,3, Neeraj Dhar1,2, Stefania Ferrari4,5, Priscille Brodin1,7, Vincent Delorme1,7, Valérie Landry7, Ana Luisa de Jesus Lopes Ribeiro3, Davide Farina5, Puneet Saxena5, Florence Pojer1,2, Antonio Carta8, Rosaria Luciani5, Alessio Porta9, Giuseppe Zanoni9, Edda De Rossi1,3, Maria Paola Costi1,4,5, Giovanna Riccardi1,3, Stewart T Cole1,2.
Abstract
Phenotypic screening of a quinoxaline library against replicating Mycobacterium tuberculosis led to the identification of lead compound Ty38c (3-((4-methoxybenzyl)amino)-6-(trifluoromethyl)quinoxaline-2-carboxylic acid). With an MIC99 and MBC of 3.1 μM, Ty38c is bactericidal and active against intracellular bacteria. To investigate its mechanism of action, we isolated mutants resistant to Ty38c and sequenced their genomes. Mutations were found in rv3405c, coding for the transcriptional repressor of the divergently expressed rv3406 gene. Biochemical studies clearly showed that Rv3406 decarboxylates Ty38c into its inactive keto metabolite. The actual target was then identified by isolating Ty38c-resistant mutants of an M. tuberculosis strain lacking rv3406. Here, mutations were found in dprE1, encoding the decaprenylphosphoryl-d-ribose oxidase DprE1, essential for biogenesis of the mycobacterial cell wall. Genetics, biochemical validation, and X-ray crystallography revealed Ty38c to be a noncovalent, noncompetitive DprE1 inhibitor. Structure-activity relationship studies generated a family of DprE1 inhibitors with a range of IC50's and bactericidal activity. Co-crystal structures of DprE1 in complex with eight different quinoxaline analogs provided a high-resolution interaction map of the active site of this extremely vulnerable target in M. tuberculosis.Entities:
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Year: 2014 PMID: 25427196 DOI: 10.1021/cb5007163
Source DB: PubMed Journal: ACS Chem Biol ISSN: 1554-8929 Impact factor: 5.100