Not too fat to fight: The emerging role of macrophage fatty acid metabolism in immunity to Mycobacterium tuberculosis
- PMID: 33559209
- DOI: 10.1111/imr.12952
Not too fat to fight: The emerging role of macrophage fatty acid metabolism in immunity to Mycobacterium tuberculosis
Abstract
While the existence of a special relationship between Mycobacterium tuberculosis (Mtb) and host lipids has long been known, it remains a challenging enigma. It was clearly established that Mtb requires host fatty acids (FAs) and cholesterol to produce energy, build its distinctive lipid-rich cell wall, and produce lipid virulence factors. It was also observed that in infected hosts, Mtb constantly resides in a FA-rich environment that the pathogen contributes to generate by inducing a lipid-laden "foamy" phenotype in host macrophages. These observations and the proximity between lipid droplets and phagosomes containing bacteria within infected macrophages gave rise to the hypothesis that Mtb reprograms host cell lipid metabolism to ensure a continuous supply of essential nutrients and its long-term persistence in vivo. However, recent studies question this principle by indicating that in Mtb-infected macrophages, lipid droplet formation prevents bacterial acquisition of host FAs while supporting the production of FA-derived protective lipid mediators. Further, in vivo investigations reveal discrete macrophage phenotypes linking the FA metabolisms of host cell and intracellular pathogen. Notably, FA storage within lipid droplets characterizes both macrophages controlling Mtb infection and dormant intracellular Mtb. In this review, we integrate findings from immunological and microbiological studies illustrating the new concept that cytoplasmic accumulation of FAs is a metabolic adaptation of macrophages to Mtb infection, which potentiates their antimycobacterial responses and forces the intracellular pathogen to shift into fat-saving, survival mode.
Keywords: Mycobacterium tuberculosis; bacterial; cell lineages and subsets; fatty acid metabolism; infectious diseases; lung; macrophages; monocytes.
© 2021 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.
References
REFERENCES
-
- Cohen SB, Gern BH, Delahaye JL, et al. Alveolar macrophages provide an early Mycobacterium tuberculosis niche and initiate dissemination. Cell Host Microbe. 2018;24:439-446.e4. https://doi.org/10.1016/j.chom.2018.08.001
-
- Ernst JD. The immunological life cycle of tuberculosis. Nat Rev Immunol. 2012;12(8):581-591. https://doi.org/10.1038/nri3259
-
- Orme IM, Basaraba RJ. The formation of the granuloma in tuberculosis infection. Semin Immunol. 2014;26:601-609. https://doi.org/10.1016/j.smim.2014.09.009
-
- Russell DG, Cardona PJ, Kim MJ, Allain S, Altare F. Foamy macrophages and the progression of the human tuberculosis granuloma. Nat Immunol. 2009;10:943-948. https://doi.org/10.1038/ni.1781
-
- Guerrini V, Prideaux B, Blanc L, et al. Storage lipid studies in tuberculosis reveal that foam cell biogenesis is disease-specific. PLOS Pathog. 2018;14(8):e1007223. https://doi.org/10.1371/journal.ppat.1007223
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