The allo-antigen specificity of a T cell driving acute cellular rejection of a kidney allograft 2302494

P Praise Chukwunalu Chukwuma (University of Notre Dame) J James Lazar (University of Notre Dame) C Chad Brambley (University of Notre Dame) T Tiffany Shi (Cincinnati Children’s Hospital Medical Center) R Ryan Schurr (University of Notre Dame) G George Gray (University of Notre Dame) S Sara Foote (1Mayo Clinic, Department of Immunology, Rochester, United States) A Ashley Burg (Cincinnati Children’s Hospital Medical Center) Y Yufei Cui A Amanda Chan (MIT) F Forest White E E Steve Woodle (Cincinnati Children’s Hospital Medical Center) M Michael Birnbaum (MIT) D David Hildeman (Cincinnati Children’s Hospital Medical Center) B Brian Baker

Abstract

Abstract Introduction While alloreactive CD8+ T cells are the main drivers of direct acute cellular rejection (ACR), their targets are poorly understood. Old models posit that TCRs on alloreactive T cells bind their targets non-specifically. However, recent data suggest that many alloreactive T cells are allospecific, recognizing unique peptide-allo-HLA complexes. Using scRNA/TCR-seq we showed that kidney biopsies from ACR patients had limited numbers of clonally expanded CD8+ T cells (CD8EXP). Here, our aim was to identify the alloantigens recognized by the CD8EXP TCRs. Methods K562 cells singly expressing donor mismatched class I HLA proteins, HLA-A*32:01 and -B*14:01, were used to stimulate Jurkat cells expressing the CD8EXP TCRs. An A*32:01 responsive TCR was used to screen an A*32:01 yeast display library. Hits from the screen were used in a molecular mimicry search (MimicMaker) of the K562 transcriptome to find potential targets. Hits from the search were compared to peptides identified by immunopeptidomics, tested for their ability to stimulate the patient-derived TCR, and mapped to the donor kidney transcriptome. Results The clone 7 TCR responded to A*32:01 on K562 cells only, indicating HLA restriction. Clone 7 failed to respond when co-cultured with A*32:01+ T2 cells in the presence of rationally designed peptides, confirming allospecificity. Yeast display screening yielded 5 highly stimulatory peptides. A MimicMaker scan of the K562 transcriptome for mimics of these peptides, along with peptidomics, identified 72 candidate targets. From these, only a single peptide strongly stimulated clone 7. This peptide is likely the biologically relevant target of the clone 7 TCR. Its source protein is highly expressed in the donor kidney. Conclusion Our interdisciplinary approach has allowed us to identify a target of a patient-derived allospecific TCR. Broader deployment of this approach is likely to yield further success, paving the way for improving transplant outcomes by linking alloreactive TCRs to their targets. Funding Source R21AI91060, R21AI169863, T32GM145773 Topic Categories Transplantation Immunology (TRAN)

Article Details

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

Authors (15)

P

Praise Chukwunalu Chukwuma

University of Notre Dame

J

James Lazar

University of Notre Dame

C

Chad Brambley

University of Notre Dame

T

Tiffany Shi

Cincinnati Children’s Hospital Medical Center

R

Ryan Schurr

University of Notre Dame

G

George Gray

University of Notre Dame

S

Sara Foote

1Mayo Clinic, Department of Immunology, Rochester, United States

A

Ashley Burg

Cincinnati Children’s Hospital Medical Center

Y

Yufei Cui

A

Amanda Chan

MIT

F

Forest White

E

E Steve Woodle

Cincinnati Children’s Hospital Medical Center

M

Michael Birnbaum

MIT

D

David Hildeman

Cincinnati Children’s Hospital Medical Center

B

Brian Baker