Journal of Medicinal Chemistry · 2003 · 138 citations · 24 references
Antimicrobial Drug DiscoveryBiosynthesisNew 2,4-DiaminopyrimidinesBiochemistryInhibitor CombinationsCandida AlbicansFolate-synthesizing Enzyme SystemMedicineNatural Product SynthesisAntifungal AgentNatural Product BiosynthesisMicrobiologyAntimicrobial CompoundPharmacologyInhibitory ActivityFolate-synthesizing EnzymesDrug DiscoveryDrug Resistance
The paper describes the design, synthesis, and testing of inhibitors of folate-synthesizing enzymes and of whole cell cultures of Candida albicans. The target enzymes used were dihydropteroic acid synthase (SYN) and dihydrofolate reductase (DHFR). Several series of new 2,4-diaminopyrimidines were synthesized and tested as inhibitors of DHFR and compared with their activity against DHFR derived from mycobacteria and Escherichia coli. To test for selectivity, also rat DHFR was used. A series of substituted 4-aminodiphenyl sulfones was tested for inhibitory activity against SYN and the I(50) values compared to those obtained previously against Plasmodium berghei- and E. coli-derived SYN. Surprisingly, QSAR equations show very similar structural dependencies. To find an explanation for the large difference in the I(50) values observed for enzyme inhibition (SYN, DHFR) and for inhibition of cell cultures of Candida, mutant strains with overexpressed efflux pumps and strains in which such pumps are deleted were included in the study and the MICs compared. Efflux pumps were responsible for the low activity of some of the tested derivatives, others showed no increase in activity after pumps were knocked out. In this case it may be speculated that these derivatives are not able to enter the cells.
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Micheál Jacob · Health Education Journal · 1989 · 3.1K citations · Full text
Human Communication, Interpersonal Communication, Communication Study +7
Lee F. Kuyper, David P. Baccanari, Michael L. Jones et al. · Journal of Medicinal Chemistry · 1996 · 106 citations · Full text