PLoS ONE · 2013 · 52 citations · 23 references
New Fabi InhibitorMedicinal FungiS. Aureus FabiAntimicrobial ChemotherapyChemical BiologyDrug ResistanceMedicinal ChemistryBiosynthesisStaphylococcus Aureus FabiAntimicrobial ResistanceInhibitory ActivityBiochemistryAntibacterial AgentAntimicrobial CompoundPharmacologyAntifungal AgentAntimicrobial SusceptibilityAntibioticsNatural SciencesMicrobiologyMedicineS. AureusDrug DiscoveryPenicillium Chryosogenum
Bacterial enoyl-acyl carrier protein reductase (FabI) is a promising novel antibacterial target. We isolated a new class of FabI inhibitor from Penicillium chrysogenum, which produces various antibiotics, the mechanisms of some of them are unknown. The isolated FabI inhibitor was determined to be meleagrin by mass spectroscopy and nuclear magnetic resonance spectral analyses, and its more active and inactive derivatives were chemically prepared. Consistent with their selective inhibition of Staphylococcus aureus FabI, meleagrin and its more active derivatives directly bound to S. aureus FabI in a fluorescence quenching assay, inhibited intracellular fatty acid biosynthesis and growth of S. aureus, and increased the minimum inhibitory concentration for fabI-overexpressing S. aureus. The compounds that were not effective against the FabK isoform, however, inhibited the growth of Streptococcus pneumoniae that contained only the FabK isoform. Additionally no resistant mutant to the compounds was obtained. Importantly, fabK-overexpressing Escherichia coli was not resistant to these compounds, but was resistant to triclosan. These results demonstrate that the compounds inhibited another target in addition to FabI. Thus, meleagrin is a new class of FabI inhibitor with at least one additional mode of action that could have potential for treating multidrug-resistant bacteria.
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Platensimycin is a selective FabF inhibitor with potent antibiotic properties
Jun Wang, S.M. Soisson, Katherine Young et al. · Nature · 2006 · 809 citations
Fatty acid synthesis is a target for antibacterial activity of unsaturated fatty acids
Chang Ji Zheng, Jung‐Sung Yoo, Taegyu Lee et al. · FEBS Letters · 2005 · 668 citations · Full text