IMEX   05356
INSTITUTO DE MEDICINA EXPERIMENTAL
Unidad Ejecutora - UE
artículos
Título:
Host-Derived Lipids from Tuberculous Pleurisy Impair Macrophage Microbicidal-Associated Metabolic Activity
Autor/es:
CORRAL, DAN; MAIO, MARIANO; MARÍN FRANCO, JOSÉ LUIS; PATIÑO-MARTÍNEZ, EDUARDO; DUETTE, GABRIEL; FUENTES, FEDERICO; DOLOTOWICZ, MARÍA BELÉN; PALMERO, DOMINGO; CHARTON, ALISON; SÁNCHEZ-TORRES, CARMEN; SOLDAN, VANESSA; ROMBOUTS, YOANN; OSTROWSKI, MATÍAS; VÉROLLET, CHRISTEL; HERNÁNDEZ-PANDO, ROGELIO; SASIAIN, MARÍA DEL CARMEN; HUDRISIER, DENIS; MARIDONNEAU-PARINI, ISABELLE; LUGO-VILLARINO, GEANNCARLO; GENOULA, MELANIE; FERREYRA, MALENA; APARICIO-TREJO, OMAR EMILIANO; MÉTAIS, ARNAUD; MORAÑA, EDUARDO JOSÉ; SCHIERLOH, PABLO; PEDRAZA-CHAVERRI, JOSÉ; LAYRE, EMILIE; NEYROLLES, OLIVIER; BALBOA, LUCIANA
Revista:
Cell Reports
Editorial:
Elsevier B.V.
Referencias:
Año: 2020 vol. 33
Resumen:
Mycobacterium tuberculosis (Mtb) regulates the macrophage metabolic state to thrive in the host, yet the responsible mechanisms remain elusive. Macrophage activation toward the microbicidal (M1) program depends on the HIF-1α-mediated metabolic shift from oxidative phosphorylation (OXPHOS) toward glycolysis. Here, we ask whether a tuberculosis (TB) microenvironment changes the M1 macrophage metabolic state. We expose M1 macrophages to the acellular fraction of tuberculous pleural effusions (TB-PEs) and find lower glycolytic activity, accompanied by elevated levels of OXPHOS and bacillary load, compared to controls. The eicosanoid fraction of TB-PE drives these metabolic alterations. HIF-1α stabilization reverts the effect of TB-PE by restoring M1 metabolism. Furthermore, Mtb-infected mice with stabilized HIF-1α display lower bacillary loads and a pronounced M1-like metabolic profile in alveolar macrophages (AMs). Collectively, we demonstrate that lipids from a TB-associated microenvironment alter the M1 macrophage metabolic reprogramming by hampering HIF-1α functions, thereby impairing control of Mtb infection.