Abstract / Summary
Mycobacterium tuberculosis has a flavin-intensive metabolism, with more than 180 proteins that require flavin or deazaflavin cofactors. M. tuberculosis requires riboflavin biosynthesis for growth in standard culture conditions in vitro , which can be overcome by providing exogenous riboflavin. It is unknown whether M. tuberculosis also requires riboflavin synthesis to grow or persist in infected host cells or tissues. Here we used a M. tuberculosis strain that conditionally expresses ribA2 , which encodes a bifunctional enzyme that catalyzes the first steps in both branches of riboflavin biosynthesis, to determine whether M. tuberculosis requires riboflavin biosynthesis during infection. Transcriptional repression of ribA2 caused death of M. tuberculosis in vitro without riboflavin supplementation. RNAseq revealed that riboflavin starved M. tuberculosis induce a transcriptional program indicating decreased electron transport chain function and broad changes to central metabolism. Transcriptional repression of ribA2 prevented M. tuberculosis growth in cultured macrophages and caused clearance of M. tuberculosis from infected tissues at all stages of infection in both C57BL/6 mice that form cellular lung lesions and C3HeB/FeJ mice that develop necrotic lung granulomas. Our results demonstrate that M. tuberculosis requires RibA2 for viability at all stages of infection and support further characterization of the riboflavin biosynthesis pathway as a potential target for development of new anti-tubercular drugs.