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Combinatorial Multicomponent Access to Natural‐Products‐Inspired Peptidomimetics: Discovery of Selective Inhibitors of Microbial Metallo‐aminopeptidases
Authors:Yanira Méndez  Karell Pérez‐Labrada  Jorge González‐Bacerio  Gilberto Valdés  María Á de?los?Chávez  Joel Osuna  Jean‐Louis Charli  Isel Pascual  Daniel G Rivera
Affiliation:1. Center for Natural Products Research, Faculty of Chemistry, University of Havana, Zapata y G, 10400, La Habana (Cuba);2. Center for Protein Studies, Faculty of Biology, University of Havana, 25 y J, 10400, La Habana (Cuba);3. Institute of Biotechnology, Autonomous National University of Mexico, Av. Universidad 2001, 62210, Cuernavaca, Morelos (México)
Abstract:The development of selective inhibitors of microbial metallo‐aminopeptidases is an important goal in the pursuit of antimicrobials for therapeutic applications. Herein, we disclose a combinatorial approach relying on two Ugi reactions for the generation of peptidomimetics inspired by natural metallo‐aminopeptidase inhibitors. The library was screened for inhibitory activity against the neutral metallo‐aminopeptidase of Escherichia coli (ePepN) and the porcine kidney cortex metallo‐aminopeptidase (pAPN), which was used as a model of the M1‐aminopeptidases of mammals. Six compounds showed typical dose–response inhibition profiles toward recombinant ePepN, with two of them being very potent and highly selective for ePepN over pAPN. Another compound showed moderate ePepN inhibition but total selectivity for this bacterial enzyme over its mammalian orthologue at concentrations of physiological relevance. This strategy proved to be useful for the identification of lead compounds for further optimization and development.
Keywords:aminopeptidases  combinatorial chemistry  medicinal chemistry  multicomponent reactions  protease inhibitors
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