Structure-Based Design of MptpB Inhibitors That Reduce Multidrug-Resistant Mycobacterium tuberculosis Survival and Infection Burden in Vivo

基于结构的设计 MptpB 抑制剂可降低体内耐多药结核分枝杆菌的存活率和感染负担

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作者:Clare F Vickers, Ana P G Silva, Ajanta Chakraborty, Paulina Fernandez, Natalia Kurepina, Charis Saville, Yandi Naranjo, Miquel Pons, Laura S Schnettger, Maximiliano G Gutierrez, Steven Park, Barry N Kreiswith, David S Perlin, Eric J Thomas, Jennifer S Cavet, Lydia Tabernero

Abstract

Mycobacterium tuberculosis protein-tyrosine-phosphatase B (MptpB) is a secreted virulence factor that subverts antimicrobial activity in the host. We report here the structure-based design of selective MptpB inhibitors that reduce survival of multidrug-resistant tuberculosis strains in macrophages and enhance killing efficacy by first-line antibiotics. Monotherapy with an orally bioavailable MptpB inhibitor reduces infection burden in acute and chronic guinea pig models and improves the overall pathology. Our findings provide a new paradigm for tuberculosis treatment.

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