mTOR-regulated Mitochondrial Metabolism Limits Mycobacterium-induced Cytotoxicity

Author:

Pagán Antonio J.ORCID,Lee Lauren J.,Edwards-Hicks Joy,Moens Cecilia B.,Tobin David M.ORCID,Busch-Nentwich Elisabeth M.,Pearce Erika L.,Ramakrishnan LalitaORCID

Abstract

ABSTRACTNecrosis of macrophages in the tuberculous granuloma represents a major pathogenic event in tuberculosis. Through a zebrafish forward genetic screen, we identified the mTOR kinase, a master regulator of metabolism, as an early host resistance factor in tuberculosis. We found that mTOR complex 1 protects macrophages from mycobacterium-induced death by enabling infection-induced increases in mitochondrial energy metabolism fueled by glycolysis. These metabolic adaptations are required to prevent mitochondrial damage and death caused by the secreted mycobacterial virulence determinant ESAT-6. Thus, the host can effectively counter this early critical mycobacterial virulence mechanism simply by regulating energy metabolism, thereby allowing pathogen-specific immune mechanisms time to develop. Our findings may explain why Mycobacterium tuberculosis, albeit humanity’s most lethal pathogen, is successful in only a minority of infected individuals.

Publisher

Cold Spring Harbor Laboratory

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