Publication | Open Access
A Bactericidal Guanidinomethyl Biaryl That Alters the Dynamics of Bacterial FtsZ Polymerization
59
Citations
45
References
2012
Year
Molecular BiologySignificant Bacterial PathogensBacterial PathogensDrug ResistanceAntimicrobial ResistancePolymer ChemistryBiochemistryBacterial Ftsz PolymerizationNew ClassesAntibacterial AgentAntimicrobial CompoundBiomolecular EngineeringAntimicrobial Resistance GeneAntibioticsNatural SciencesPolymer ScienceMacromolecular SystemBactericidal Guanidinomethyl BiarylProtein EngineeringFtsz Self-polymerizationMicrobiologyMedicinePolymer ReactionDrug Discovery
The prevalence of multidrug resistance among clinically significant bacterial pathogens underscores a critical need for the development of new classes of antibiotics with novel mechanisms of action. Here we describe the synthesis and evaluation of a guanidinomethyl biaryl compound {1-((4'-(tert-butyl)-[1,1'-biphenyl]-3-yl)methyl)guanidine} that targets the bacterial cell division protein FtsZ. In vitro studies with various bacterial FtsZ proteins reveal that the compound alters the dynamics of FtsZ self-polymerization via a stimulatory mechanism, while minimally impacting the polymerization of tubulin, the closest mammalian homologue of FtsZ. The FtsZ binding site of the compound is identified through a combination of computational and mutational approaches. The compound exhibits a broad spectrum of bactericidal activity, including activity against the multidrug-resistant pathogens methicillin-resistant Staphylococcus aureus (MRSA) and vancomycin-resistant Enterococcus (VRE), while also exhibiting a minimal potential to induce resistance. Taken together, our results highlight the compound as a promising new FtsZ-targeting bactericidal agent.
| Year | Citations | |
|---|---|---|
Page 1
Page 1