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Discrete tissue microenvironments instruct diversity in resident memory T cell function and plasticity

Authors :
Axel Kallies
William R. Heath
Dane M. Newman
Nicholas D. Huntington
Thomas N. Burn
Andrew Lucas
Francis R. Carbone
Luke C. Gandolfo
Simone L Park
Terence P. Speed
Michaela Lucas
Natasha Zamudio
Fernando Souza-Fonseca-Guimaraes
Laura K. Mackay
Gabrielle T. Belz
Maximilien Evrard
Nicholas Collins
Laurent Bartholin
Wei Shi
Daniel G. Pellicci
Yannick O. Alexandre
Raissa Fonseca
Scott N. Mueller
David Chisanga
Florent Ginhoux
Susan N Christo
Source :
Nature Immunology. 22:1140-1151
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

Tissue-resident memory T (TRM) cells are non-recirculating cells that exist throughout the body. Although TRM cells in various organs rely on common transcriptional networks to establish tissue residency, location-specific factors adapt these cells to their tissue of lodgment. Here we analyze TRM cell heterogeneity between organs and find that the different environments in which these cells differentiate dictate TRM cell function, durability and malleability. We find that unequal responsiveness to TGFβ is a major driver of this diversity. Notably, dampened TGFβ signaling results in CD103- TRM cells with increased proliferative potential, enhanced function and reduced longevity compared with their TGFβ-responsive CD103+ TRM counterparts. Furthermore, whereas CD103- TRM cells readily modified their phenotype upon relocation, CD103+ TRM cells were comparatively resistant to transdifferentiation. Thus, despite common requirements for TRM cell development, tissue adaptation of these cells confers discrete functional properties such that TRM cells exist along a spectrum of differentiation potential that is governed by their local tissue microenvironment.

Details

ISSN :
15292916 and 15292908
Volume :
22
Database :
OpenAIRE
Journal :
Nature Immunology
Accession number :
edsair.doi...........5b4be269bb56ae64479bd424fdaaa3b8
Full Text :
https://doi.org/10.1038/s41590-021-01004-1