Antifungal Tc17 Cells Are Durable and Stable, Persisting As Long-lasting Vaccine Memory Without Plasticity Towards IFNγ Cells
Overview
Authors
Affiliations
Our understanding of persistence and plasticity of IL-17A+ memory T cells is clouded by conflicting results in models analyzing T helper 17 cells. We studied memory IL-17A+ CD8+ T-cell (Tc17) homeostasis, persistence and plasticity during fungal vaccine immunity. We report that vaccine-induced memory Tc17 cells persist with high fidelity to the type 17 phenotype. Tc17 cells persisted durably for a year as functional IL-17A+ memory cells without converting to IFNγ+ (Tc1) cells, although they produced multiple type I cytokines in the absence of residual vaccine antigen. Memory Tc17 cells were canonical CD8+ T cells with phenotypic features distinct from Tc1 cells, and were Ror(γ)thi, TCF-1hi, T-betlo and EOMESlo. In investigating the bases of Tc17 persistence, we observed that memory Tc17 cells had much higher levels of basal homeostatic proliferation than did Tc1 cells. Conversely, memory Tc17 cells displayed lower levels of anti-apoptotic molecules Bcl-2 and Bcl-xL than Tc1 cells, yet were resistant to apoptosis. Tc1 cells required Bcl-2 for their survival, but Bcl-2 was dispensable for the maintenance of Tc17 cells. Tc17 and Tc1 cells displayed different requirements for HIF-1α during effector differentiation and sustenance and memory persistence. Thus, antifungal vaccination induces durable and stable memory Tc17 cells with distinct requirements for long-term persistence that distinguish them from memory Tc1 cells.
Fungal vaccines and adjuvants: a tool to reveal the interaction between host and fungi.
Wang Z, Shao J Arch Microbiol. 2024; 206(7):293.
PMID: 38850421 DOI: 10.1007/s00203-024-04010-7.
Shu L, Xu H, Ji J, Xu Y, Dong Z, Wu Y Neuromolecular Med. 2024; 26(1):17.
PMID: 38684592 DOI: 10.1007/s12017-024-08786-1.
Friend or Foe - Tc17 cell generation and current evidence for their importance in human disease.
Hipp A, Bengsch B, Globig A Discov Immunol. 2024; 2(1):kyad010.
PMID: 38567057 PMC: 10917240. DOI: 10.1093/discim/kyad010.
Ishimoto T, Arakawa Y, Vural S, Stohr J, Vollmer S, Galinski A Front Immunol. 2024; 15:1374581.
PMID: 38524140 PMC: 10958380. DOI: 10.3389/fimmu.2024.1374581.
HELIOS-expressing human CD8 T cells exhibit limited effector functions.
Neyens D, Hirsch T, Abdel Aziz Issa Abdel Hadi A, Dauguet N, Vanhaver C, Bayard A Front Immunol. 2024; 14:1308539.
PMID: 38187391 PMC: 10770868. DOI: 10.3389/fimmu.2023.1308539.