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Human γδ T cells in diverse tissues exhibit site-specific maturation dynamics across the life span.

Accepted version
Peer-reviewed

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Abstract

During ontogeny, γδ T cells emerge from the thymus and directly seed peripheral tissues for in situ immunity. However, their functional role in humans has largely been defined from blood. Here, we analyzed the phenotype, transcriptome, function, and repertoire of human γδ T cells in blood and mucosal and lymphoid tissues from 176 donors across the life span, revealing distinct profiles in children compared with adults. In early life, clonally diverse Vδ1 subsets predominate across blood and tissues, comprising naïve and differentiated effector and tissue repair functions, whereas cytolytic Vδ2 subsets populate blood, spleen, and lungs. With age, Vδ1 and Vδ2 subsets exhibit clonal expansions and elevated cytolytic signatures, which are disseminated across sites. In adults, Vδ2 cells predominate in blood, whereas Vδ1 cells are enriched across tissues and express residency profiles. Thus, antigenic exposures over childhood drive the functional evolution and tissue compartmentalization of γδ T cells, leading to age-dependent roles in immunity.

Description

Journal Title

Sci Immunol

Conference Name

Journal ISSN

2470-9468
2470-9468

Volume Title

9

Publisher

American Association for the Advancement of Science (AAAS)

Rights and licensing

Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
Silicon Valley Community Foundation (via University of California, Berkeley) (242890)
Chan Zuckerberg Initiative (via University of California) (10208)
National Institute for Health and Care Research (IS-BRC-1215-20014)