A minimal gene set characterizes TIL specific for diverse tumor antigens across different cancer types

Z Zhen Zeng (School of Chemical Sciences) T Tianbei Zhang J Jiajia Zhang (Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Key Laboratory of Cluster Science, Ministry of Education, Frontiers Science Center for High Energy Material, Advanced Technology Research Institute (Jinan), School of Chemistry and Chemical Engineering) S Shuai Li S Sydney Connor B Boyang Zhang Y Yimin Zhao J Jordan Wilson D Dipika Singh R Rima Kulikauskas C Candice D. Church T Thomas H. Pulliam S Saumya Jani P Paul Nghiem S Suzanne L. Topalian P Patrick M. Forde D Drew M. Pardoll (Department of Oncology and Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine) H Hongkai Ji K Kellie N. Smith

Abstract

Abstract Identifying tumor-specific T cell clones that mediate immunotherapy responses remains challenging. Mutation-associated neoantigen (MANA) -specific CD8+ tumor-infiltrating lymphocytes (TIL) have been shown to express high levels of CXCL13 and CD39 (ENTPD1), and low IL-7 receptor (IL7R) levels in many cancer types, but their collective relevance to T cell functionality has not been established. Here we present an integrative tool to identify MANA-specific TIL using weighted expression levels of these three genes in lung cancer and melanoma single-cell RNAseq datasets. Our three-gene “MANAscore” algorithm outperforms other RNAseq-based algorithms in identifying validated neoantigen-specific CD8+ clones, and accurately identifies TILs that recognize other classes of tumor antigens, including cancer testis antigens, endogenous retroviruses and viral oncogenes. Most of these TIL are characterized by a tissue resident memory gene expression program. Putative tumor-reactive cells (pTRC) identified via MANAscore in anti-PD-1-treated lung tumors had higher expression of checkpoint and cytotoxicity-related genes relative to putative non-tumor-reactive cells. pTRC in pathologically responding tumors showed distinguished gene expression patterns and trajectories. Collectively, we show that MANAscore is a robust tool that can greatly enrich candidate tumor-specific T cells and be used to understand the functional programming of tumor-reactive TIL.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 03, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

Z

Zhen Zeng

School of Chemical Sciences

T

Tianbei Zhang

J

Jiajia Zhang

Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Key Laboratory of Cluster Science, Ministry of Education, Frontiers Science Center for High Energy Material, Advanced Technology Research Institute (Jinan), School of Chemistry and Chemical Engineering

S

Shuai Li

S

Sydney Connor

B

Boyang Zhang

Y

Yimin Zhao

J

Jordan Wilson

D

Dipika Singh

R

Rima Kulikauskas

C

Candice D. Church

T

Thomas H. Pulliam

S

Saumya Jani

P

Paul Nghiem

S

Suzanne L. Topalian

P

Patrick M. Forde

D

Drew M. Pardoll

Department of Oncology and Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine

H

Hongkai Ji

K

Kellie N. Smith