Title | Antitubercular 2-Pyrazolylpyrimidinones: Structure-Activity Relationship and Mode-of-Action Studies. |
Publication Type | Journal Article |
Year of Publication | 2021 |
Authors | de Melo CSoares, Singh V, Myrick A, Simelane SB, Taylor D, Brunschwig C, Lawrence N, Schnappinger D, Engelhart CA, Kumar A, Parish T, Su Q, Myers TG, Boshoff HIM, Barry CE, Sirgel FA, van Helden PD, Buchanan KI, Bayliss T, Green SR, Ray PC, Wyatt PG, Basarab GS, Eyermann CJ, Chibale K, Ghorpade SR |
Journal | J Med Chem |
Volume | 64 |
Issue | 1 |
Pagination | 719-740 |
Date Published | 2021 Jan 14 |
ISSN | 1520-4804 |
Keywords | Animals, Antitubercular Agents, Bacterial Proteins, Half-Life, Humans, Iron, Male, Membrane Transport Proteins, Mice, Mice, Inbred C57BL, Microbial Sensitivity Tests, Microsomes, Mutation, Mycobacterium tuberculosis, Pyrazoles, Pyrimidinones, Rats, Structure-Activity Relationship |
Abstract | Phenotypic screening of a Medicines for Malaria Venture compound library against Mycobacterium tuberculosis (Mtb) identified a cluster of pan-active 2-pyrazolylpyrimidinones. The biology triage of these actives using various tool strains of Mtb suggested a novel mechanism of action. The compounds were bactericidal against replicating Mtb and retained potency against clinical isolates of Mtb. Although selected MmpL3 mutant strains of Mtb showed resistance to these compounds, there was no shift in the minimum inhibitory concentration (MIC) against a mmpL3 hypomorph, suggesting mutations in MmpL3 as a possible resistance mechanism for the compounds but not necessarily as the target. RNA transcriptional profiling and the checkerboard board 2D-MIC assay in the presence of varying concentrations of ferrous salt indicated perturbation of the Fe-homeostasis by the compounds. Structure-activity relationship studies identified potent compounds with good physicochemical properties and in vitro microsomal metabolic stability with moderate selectivity over cytotoxicity against mammalian cell lines. |
DOI | 10.1021/acs.jmedchem.0c01727 |
Alternate Journal | J Med Chem |
PubMed ID | 33395287 |
PubMed Central ID | PMC7816196 |
Grant List | 203134/Z/16/Z / WT_ / Wellcome Trust / United Kingdom |
Submitted by ljc4002 on August 21, 2025 - 1:53pm