Antigen dependency defines memory and exhausted CD8 T cell fates 2257447

J Jenny Krause C Courtney Matson (University of Minnesota) M Meagan Rollins (University of Minnesota) N Noah Gavil (University of Minnesota) S Sathi Wijeyesinghe (Seattle Children’s Hospital) S Stephen O’Flanagan (University of Minnesota) O Olivia Ghirardelli-Smith (University of Minnesota) A Andrew Soerens (University of Minnesota) C Clare Quarnstrom (University of Minnesota) M Matthew Watowich (University of Minnesota) J Joseph Guter (University of Minnesota) J Jax Dunning (University of Minnesota) H Hoyoung Lee (6Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea) M Marco Künzli (University of Minnesota) E Eyob Weyu (University of Minnesota) I Ingunn Stromness (University of Minnesota) Y Yun You (University of Minnesota) B Beau Webber (3Luminary Therapeutics, Minnesota, United States) V Vaiva Vezy (University of Minnesota) D David Masopust (University of Minnesota)

Abstract

Abstract Introduction Antigen experienced T cell subsets are heterogenous, and can be described based on their phenotype, function, and migration properties. We wished to better understand how antigen stimulation regulates the trafficking, survival, differentiation and developmental plasticity of T cell subsets. Methods We developed a new mouse model that allows for the in vivo excision of the P14 TCR on a defined fraction of antigen-specific CD8 T cells. Specifically, we engineered a novel tamoxifen-inducible TCR-knockout transgenic mouse using a rAAV6 vector encoding for the floxed P14 TCR gene. This model allows for permanent cessation of antigen stimulation on select T cells at time points of our choosing. Results After acute infection with LCMV Armstrong, elimination of the TCR on established memory CD8 T cells maintained stable subset composition, but resulted in detectable downregulation of exhaustion markers, indicating that TCR sensing occurs among steady-state memory T cells. TCR deletion during chronic infections (LCMV Minnesota and LCMV Cl13 ± aCD4 depletion) affected both the population structure and phenotype. Terminal (Tex/TXt), as well as progenitor exhausted (Tpex/TXp) T cell subsets substantially declined after TCR deletion in persistently viremic infection with LCMV Cl13 + aCD4. However, the loss of Tpex/TXp after TCR deletion was moderated in settings of chronic infections without CD4 T cell depletion, in which most host viral load was more tightly controlled. Conclusion These results demonstrate that the antigen dependence of Tpex/TXp depends on context, and a subset may survive in the absence of further antigen stimulation, which has important implications for maintaining immunity to chronic infections and cancer. Funding Source Walter Benjamin Program, DFG Topic Categories Lymphocyte Differentiation and Peripheral Maintenance (LYM)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (20)

J

Jenny Krause

C

Courtney Matson

University of Minnesota

M

Meagan Rollins

University of Minnesota

N

Noah Gavil

University of Minnesota

S

Sathi Wijeyesinghe

Seattle Children’s Hospital

S

Stephen O’Flanagan

University of Minnesota

O

Olivia Ghirardelli-Smith

University of Minnesota

A

Andrew Soerens

University of Minnesota

C

Clare Quarnstrom

University of Minnesota

M

Matthew Watowich

University of Minnesota

J

Joseph Guter

University of Minnesota

J

Jax Dunning

University of Minnesota

H

Hoyoung Lee

6Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea

M

Marco Künzli

University of Minnesota

E

Eyob Weyu

University of Minnesota

I

Ingunn Stromness

University of Minnesota

Y

Yun You

University of Minnesota

B

Beau Webber

3Luminary Therapeutics, Minnesota, United States

V

Vaiva Vezy

University of Minnesota

D

David Masopust

University of Minnesota