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Divergent metabolic programmes control two populations of MAIT cells that protect the lung

Authors :
Riffelmacher, Thomas
Paynich Murray, Mallory
Wientjens, Chantal
Chandra, Shilpi
Cedillo-Castelán, Viankail
Chou, Ting-Fang
McArdle, Sara
Dillingham, Christopher
Devereaux, Jordan
Nilsen, Aaron
Brunel, Simon
Lewinsohn, David M.
Hasty, Jeff
Seumois, Gregory
Benedict, Christopher A.
Vijayanand, Pandurangan
Kronenberg, Mitchell
Source :
Nature Cell Biology; June 2023, Vol. 25 Issue: 6 p877-891, 15p
Publication Year :
2023

Abstract

Although mucosal-associated invariant T (MAIT) cells provide rapid, innate-like responses, they are not pre-set, and memory-like responses have been described for MAIT cells following infections. The importance of metabolism for controlling these responses, however, is unknown. Here, following pulmonary immunization with a Salmonellavaccine strain, mouse MAIT cells expanded as separate CD127−Klrg1+and CD127+Klrg1−antigen-adapted populations that differed in terms of their transcriptome, function and localization in lung tissue. These populations remained altered from steady state for months as stable, separate MAIT cell lineages with enhanced effector programmes and divergent metabolism. CD127+MAIT cells engaged in an energetic, mitochondrial metabolic programme, which was critical for their maintenance and IL-17A synthesis. This programme was supported by high fatty acid uptake and mitochondrial oxidation and relied on highly polarized mitochondria and autophagy. After vaccination, CD127+MAIT cells protected mice against Streptococcus pneumoniaeinfection. In contrast, Klrg1+MAIT cells had dormant but ready-to-respond mitochondria and depended instead on Hif1a-driven glycolysis to survive and produce IFN-γ. They responded antigen independently and participated in protection from influenza virus. These metabolic dependencies may enable tuning of memory-like MAIT cell responses for vaccination and immunotherapies.

Details

Language :
English
ISSN :
14657392 and 14764679
Volume :
25
Issue :
6
Database :
Supplemental Index
Journal :
Nature Cell Biology
Publication Type :
Periodical
Accession number :
ejs63143403
Full Text :
https://doi.org/10.1038/s41556-023-01152-6