Publication: Comparative Metabolomics between Mycobacterium tuberculosis and the MTBVAC Vaccine Candidate.
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Date
2019-05-30
Authors
Díaz, Caridad
Pérez Del Palacio, José
Valero-Guillén, Pedro Luis
Mena García, Patricia
Pérez, Irene
Vicente, Francisca
Martín, Carlos
Genilloud, Olga
Sánchez Pozo, Antonio
Gonzalo-Asensio, Jesús
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Abstract
MTBVAC is a live attenuated M. tuberculosis vaccine constructed by genetic deletions in the phoP and fadD26 virulence genes. The MTBVAC vaccine is currently in phase 2 clinical trials with newborns and adults in South Africa, one of the countries with the highest incidence. Although MTBVAC has been extensively characterized by genomics, transcriptomics, lipidomics, and proteomics, its metabolomic profile is yet unknown. Accordingly, in this study we aim to identify differential metabolites between M. tuberculosis and MTBVAC. To this end, an untargeted metabolomics approach based on liquid chromatography coupled to high-resolution mass spectrometry was implemented in order to explore the main metabolic differences between M. tuberculosis and MTBVAC. As an outcome, we identified a set of 34 metabolites involved in diverse bacterial biosynthetic pathways. A consistent increase in the phosphatidylinositol species was observed in the vaccine candidate relative to its parental strain. This phenotype resulted in an increased production of phosphatidylinositol mannosides, a novel PhoP-regulated phenotype in the most widespread lineages of M. tuberculosis. This study represents a step ahead in our understanding of the MTBVAC vaccine, and some of the differential metabolites identified in this work might be used as potential vaccination biomarkers.
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MeSH Terms
Bacterial Proteins
Biosynthetic Pathways
Chromatography, Liquid
Mass Spectrometry
Metabolomics
Mycobacterium tuberculosis
Phosphatidylinositols
Tuberculosis Vaccines
Biosynthetic Pathways
Chromatography, Liquid
Mass Spectrometry
Metabolomics
Mycobacterium tuberculosis
Phosphatidylinositols
Tuberculosis Vaccines
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Keywords
live attenuated vaccine, phoP, phosphatidylinositol mannosides, vaccination biomarkers, virulence