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1.
Bioorg Med Chem ; 23(22): 7240-50, 2015 Nov 15.
Artículo en Inglés | MEDLINE | ID: mdl-26522089

RESUMEN

Whole-cell high-throughput screening of a diverse SoftFocus library against Mycobacterium tuberculosis (Mtb) generated a novel aminopyrazolo[1,5-a]pyrimidine hit series. The synthesis and structure activity relationship studies identified compounds with potent antimycobacterial activity. The SAR of over 140 compounds shows that the 2-pyridylmethylamine moiety at the C-7 position of the pyrazolopyrimidine scaffold was important for Mtb activity, whereas the C-3 position offered a higher degree of flexibility. The series was also profiled for in vitro cytotoxicity and microsomal metabolic stability as well as physicochemical properties. Consequently liabilities to be addressed in a future lead optimization campaign have been identified.


Asunto(s)
Antituberculosos/farmacología , Mycobacterium tuberculosis/efectos de los fármacos , Pirazoles/química , Pirimidinas/química , Animales , Antituberculosos/química , Antituberculosos/metabolismo , Células CHO , Supervivencia Celular/efectos de los fármacos , Cricetinae , Cricetulus , Diseño de Fármacos , Semivida , Ratones , Pruebas de Sensibilidad Microbiana , Microsomas Hepáticos/metabolismo , Pirazoles/síntesis química , Pirazoles/farmacología , Pirimidinas/síntesis química , Pirimidinas/farmacología , Ratas , Solubilidad , Relación Estructura-Actividad
2.
J Med Chem ; 64(1): 719-740, 2021 01 14.
Artículo en Inglés | MEDLINE | ID: mdl-33395287

RESUMEN

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.


Asunto(s)
Antituberculosos/química , Pirimidinonas/química , Animales , Antituberculosos/metabolismo , Antituberculosos/farmacología , Proteínas Bacterianas/antagonistas & inhibidores , Proteínas Bacterianas/genética , Proteínas Bacterianas/metabolismo , Semivida , Humanos , Hierro/metabolismo , Masculino , Proteínas de Transporte de Membrana/genética , Proteínas de Transporte de Membrana/metabolismo , Ratones , Ratones Endogámicos C57BL , Pruebas de Sensibilidad Microbiana , Microsomas/metabolismo , Mutación , Mycobacterium tuberculosis/efectos de los fármacos , Mycobacterium tuberculosis/aislamiento & purificación , Pirazoles/química , Pirimidinonas/metabolismo , Pirimidinonas/farmacología , Ratas , Relación Estructura-Actividad
3.
ACS Infect Dis ; 4(6): 954-969, 2018 06 08.
Artículo en Inglés | MEDLINE | ID: mdl-29522317

RESUMEN

Mycobacterium tuberculosis ( MTb) possesses two nonproton pumping type II NADH dehydrogenase (NDH-2) enzymes which are predicted to be jointly essential for respiratory metabolism. Furthermore, the structure of a closely related bacterial NDH-2 has been reported recently, allowing for the structure-based design of small-molecule inhibitors. Herein, we disclose MTb whole-cell structure-activity relationships (SARs) for a series of 2-mercapto-quinazolinones which target the ndh encoded NDH-2 with nanomolar potencies. The compounds were inactivated by glutathione-dependent adduct formation as well as quinazolinone oxidation in microsomes. Pharmacokinetic studies demonstrated modest bioavailability and compound exposures. Resistance to the compounds in MTb was conferred by promoter mutations in the alternative nonessential NDH-2 encoded by ndhA in MTb. Bioenergetic analyses revealed a decrease in oxygen consumption rates in response to inhibitor in cells in which membrane potential was uncoupled from ATP production, while inverted membrane vesicles showed mercapto-quinazolinone-dependent inhibition of ATP production when NADH was the electron donor to the respiratory chain. Enzyme kinetic studies further demonstrated noncompetitive inhibition, suggesting binding of this scaffold to an allosteric site. In summary, while the initial MTb SAR showed limited improvement in potency, these results, combined with structural information on the bacterial protein, will aid in the future discovery of new and improved NDH-2 inhibitors.


Asunto(s)
Mycobacterium tuberculosis/enzimología , NADH Deshidrogenasa/química , Quinazolinonas/química , Estructura Molecular , NADH Deshidrogenasa/antagonistas & inhibidores , Quinazolinonas/síntesis química , Quinazolinonas/farmacología , Relación Estructura-Actividad
4.
J Med Chem ; 60(24): 10118-10134, 2017 12 28.
Artículo en Inglés | MEDLINE | ID: mdl-29148755

RESUMEN

A BioFocus DPI SoftFocus library of ∼35 000 compounds was screened against Mycobacterium tuberculosis (Mtb) in order to identify novel hits with antitubercular activity. The hits were evaluated in biology triage assays to exclude compounds suggested to function via frequently encountered promiscuous mechanisms of action including inhibition of the QcrB subunit of the cytochrome bc1 complex, disruption of cell-wall homeostasis, and DNA damage. Among the hits that passed this screening cascade, a 6-dialkylaminopyrimidine carboxamide series was prioritized for hit to lead optimization. Compounds from this series were active against clinical Mtb strains, while no cross-resistance to conventional antituberculosis drugs was observed. This suggested a novel mechanism of action, which was confirmed by chemoproteomic analysis leading to the identification of BCG_3193 and BCG_3827 as putative targets of the series with unknown function. Initial structure-activity relationship studies have resulted in compounds with moderate to potent antitubercular activity and improved physicochemical properties.


Asunto(s)
Antituberculosos/química , Antituberculosos/farmacología , Mycobacterium tuberculosis/efectos de los fármacos , Relación Estructura-Actividad , Administración Oral , Animales , Antituberculosos/síntesis química , Proteínas Sanguíneas/metabolismo , Estabilidad de Medicamentos , Ensayos Analíticos de Alto Rendimiento , Humanos , Masculino , Ratones Endogámicos C57BL , Microsomas Hepáticos/efectos de los fármacos , Mycobacterium tuberculosis/aislamiento & purificación , Proteómica/métodos , Pirimidinas/química , Bibliotecas de Moléculas Pequeñas/química , Bibliotecas de Moléculas Pequeñas/farmacología
5.
J Med Chem ; 58(23): 9371-81, 2015 Dec 10.
Artículo en Inglés | MEDLINE | ID: mdl-26551248

RESUMEN

High-throughput screening of a library of small polar molecules against Mycobacterium tuberculosis led to the identification of a phthalimide-containing ester hit compound (1), which was optimized for metabolic stability by replacing the ester moiety with a methyl oxadiazole bioisostere. A route utilizing polymer-supported reagents was designed and executed to explore structure-activity relationships with respect to the N-benzyl substituent, leading to compounds with nanomolar activity. The frontrunner compound (5h) from these studies was well tolerated in mice. A M. tuberculosis cytochrome bd oxidase deletion mutant (ΔcydKO) was hyper-susceptible to compounds from this series, and a strain carrying a single point mutation in qcrB, the gene encoding a subunit of the menaquinol cytochrome c oxidoreductase, was resistant to compounds in this series. In combination, these observations indicate that this novel class of antimycobacterial compounds inhibits the cytochrome bc1 complex, a validated drug target in M. tuberculosis.


Asunto(s)
Antituberculosos/química , Antituberculosos/farmacología , Complejo III de Transporte de Electrones/antagonistas & inhibidores , Mycobacterium tuberculosis/efectos de los fármacos , Mycobacterium tuberculosis/enzimología , Pirroles/química , Pirroles/farmacología , Animales , Antituberculosos/metabolismo , Antituberculosos/farmacocinética , Complejo III de Transporte de Electrones/metabolismo , Humanos , Ratones , Microsomas Hepáticos/metabolismo , Terapia Molecular Dirigida , Piridonas/química , Piridonas/metabolismo , Piridonas/farmacocinética , Piridonas/farmacología , Pirroles/metabolismo , Pirroles/farmacocinética , Ratas , Tuberculosis/tratamiento farmacológico , Tuberculosis/microbiología
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