Author:
Chancellor Andrew,Tocheva Anna S.,Cave-Ayland Chris,Tezera Liku,White Andrew,Al Dulayymi Juma’a R.,Bridgeman John S.,Tews Ivo,Wilson Susan,Lissin Nikolai M.,Tebruegge Marc,Marshall Ben,Sharpe Sally,Elliott Tim,Skylaris Chris-Kriton,Essex Jonathan W.,Baird Mark S.,Gadola Stephan,Elkington Paul,Mansour Salah
Abstract
Tuberculosis (TB), caused byMycobacterium tuberculosis, remains a major human pandemic. Germline-encoded mycolyl lipid-reactive (GEM) T cells are donor-unrestricted and recognize CD1b-presented mycobacterial mycolates. However, the molecular requirements governing mycolate antigenicity for the GEM T cell receptor (TCR) remain poorly understood. Here, we demonstrate CD1b expression in TB granulomas and reveal a central role for meromycolate chains in influencing GEM-TCR activity. Meromycolate fine structure influences T cell responses in TB-exposed individuals, and meromycolate alterations modulate functional responses by GEM-TCRs. Computational simulations suggest that meromycolate chain dynamics regulate mycolate head group movement, thereby modulating GEM-TCR activity. Our findings have significant implications for the design of future vaccines that target GEM T cells.
Funder
Cancer Research UK
RCUK | Medical Research Council
HHS | National Institutes of Health
Public Health England
Publisher
Proceedings of the National Academy of Sciences
Cited by
39 articles.
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