Activation of l-histidine biosynthesis as a new antibiotic strategy against Mycobacterium tuberculosis
Abstract
Abstract The increasing prevalence of antimicrobial resistance is an important challenge that warrants new approaches to antibiotic development. Currently, all antibiotics inhibit biological processes. To explore whether activation of a biochemical pathway can elicit bactericidal effects we engineered variants of Mycobacterium tuberculosis ATP-phosphoribosyltransferase (ATP-PRT) that are resistant to allosteric inhibition by l -histidine, leading to supraphysiological activation of ATP-PRT and l -histidine overproduction. Upregulation of L-histidine biosynthesis significantly reduces the growth of M. tuberculosis in culture and causes a loss of fitness owing to nutrient and energy depletion. Moreover, the expression of allosteric variants in M. tuberculosis significantly reduced infections in human macrophages and in a mouse model of infection. Thus, metabolic activation represents a new mycobactericidal mechanism that could be applied to antimycobacterial drug discovery.
Article Details
Authors (13)
Debbie M. Hunt
João Pedro Pisco
Angela Rodgers
Cesira de Chiara
Anisha Zaveri
Kamila L. Pacholarz
Dimitrios Evangelopoulos
Acely Garza-Garcia
Sabine Ehrt
Dirk Schnappinger
Perdita E. Barran
Michael Barber Centre for Collaborative Mass Spectrometry, Manchester Institute of Biotechnology, Department of Chemistry, The University of Manchester, 131 Princess Street, Manchester M1 7DN, U.K.
Maximiliano G. Gutierrez
Luiz Pedro S. de Carvalho