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Rationalizing the generation of broad spectrum antibiotics with the addition of a positive charge

Nandan Haloi, Archit Vasan, Emily J. Geddes, Arjun Prasanna, Po‐Chao Wen, William W. Metcalf, Paul J. Hergenrother, Emad Tajkhorshid

2021Chemical Science30 citationsDOIOpen Access PDF

Abstract

, OmpF. To improve sampling of conformationally flexible drugs in MD simulations, we developed a novel, Monte Carlo and graph theory based algorithm to probe more efficiently the rotational and translational degrees of freedom visited during the permeation of the antibiotic molecule through OmpF. The resulting pathways were then used for free-energy calculations, revealing a lower barrier against the permeation of the aminated compound, substantiating its greater OM permeability. Further analysis revealed that the amine facilitates permeation by enabling the antibiotic to align its dipole to the luminal electric field of the porin and form favorable electrostatic interactions with specific, highly-conserved charged residues. The importance of these interactions in permeation was further validated with experimental mutagenesis and whole cell accumulation assays. Overall, this study provides insights on the importance of the primary amine for antibiotic permeation into Gram-negative pathogens that could help the design of future antibiotics. We also offer a new computational approach for calculating free-energy of processes where relevant molecular conformations cannot be efficiently captured.

Topics & Concepts

Monte Carlo methodPermeationBroad spectrumMembraneAntibioticsChemistryComputational chemistryGraphCombinatorial chemistryMathematicsBiochemistryCombinatoricsStatisticsRNA and protein synthesis mechanismsLipid Membrane Structure and BehaviorBacterial Genetics and Biotechnology