Promotion of Anti-Tuberculosis Macrophage Activity by L-Arginine in the Absence of Nitric Oxide

Author:

McKell Melanie C.,Crowther Rebecca R.,Schmidt Stephanie M.,Robillard Michelle C.,Cantrell Rachel,Lehn Maria A.,Janssen Edith M.,Qualls Joseph E.

Abstract

Macrophages are indispensable immune cells tasked at eliminating intracellular pathogens. Mycobacterium tuberculosis (Mtb), one of the most virulent intracellular bacterial pathogens known to man, infects and resides within macrophages. While macrophages can be provoked by extracellular stimuli to inhibit and kill Mtb bacilli, these host defense mechanisms can be blocked by limiting nutritional metabolites, such as amino acids. The amino acid L-arginine has been well described to enhance immune function, especially in the context of driving macrophage nitric oxide (NO) production in mice. In this study, we aimed to establish the necessity of L-arginine on anti-Mtb macrophage function independent of NO. Utilizing an in vitro system, we identified that macrophages relied on NO for only half of their L-arginine-mediated host defenses and this L-arginine-mediated defense in the absence of NO was associated with enhanced macrophage numbers and viability. Additionally, we observed macrophage glycolysis to be driven by both L-arginine and mechanistic target of rapamycin (mTOR), and inhibition of glycolysis or mTOR reduced macrophage control of Mtb as well as macrophage number and viability in the presence of L-arginine. Our data underscore L-arginine as an essential nutrient for macrophage function, not only by fueling anti-mycobacterial NO production, but also as a central regulator of macrophage metabolism and additional host defense mechanisms.

Funder

National Institutes of Health

American Lung Association

Albert J. Ryan Foundation

Publisher

Frontiers Media SA

Subject

Immunology,Immunology and Allergy

Reference90 articles.

1. Center for Disease Control and Prevention: Tuberculosis (Tb),2018

2. World Health Organization: Global Tuberculosis Report 2018,2019

3. Macrophage-Microbe Interaction: Lessons Learned From the Pathogen Mycobacterium Tuberculosis;BoseDasgupta;Semin Immunopathol,2018

4. Macrophages in Tuberculosis: Friend or Foe;Guirado;Semin Immunopathol,2013

5. Revisiting the Role of the Granuloma in Tuberculosis;Ramakrishnan;Nat Rev Immunol,2012

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