PD-1 antibody-bound progenitor-exhausted CD8+ T cells in lymph nodes boost PD-1-blockade anti-tumor immunity in gastrointestinal cancer

Y Yohei Nose Y Yoshiaki Yasumizu T Takuro Saito Y Yamami Nakamura K Koichi Jinushi K Kaoru Fujikawa K Kota Momose K Kotaro Yamashita K Koji Tanaka K Kazuyoshi Yamamoto T Tomoki Makino T Tsuyoshi Takahashi A Azumi Ueyama Y Yukinori Kurokawa E Eiichi Sato N Naganari Ohkura S Shimon Sakaguchi H Hisashi Wada H Hidetoshi Eguchi Y Yuichiro Doki

Abstract

Abstract While progenitor-exhausted T cells (Tpex) expressing TCF1 and PD-1 are crucial for the therapeutic effect of immune checkpoint inhibitors (ICIs) with therapeutic anti-PD-1 antibodies (aPD-1), the dynamics of ICI-bound Tpex are not fully understood. In this study, we investigate ICI-bound T cells in detail using combined sequencing analysis at the single-cell level. By analyzing samples from gastrointestinal cancer patients with or without ICI treatment, we find that Tpex are enriched in proximal lymph nodes (LNs) and proliferate at a high rate after ICI treatment. Importantly, aPD-1 high-bound Tpex in LNs share T-cell receptor clonotypes with intratumoral exhausted CD8 + T cells (Tex), suggesting their migration to tumor sites after ICI treatment. This study thus provides new insights into how ICIs enhance anti-tumor immunity by acting on Tpex in LNs, deepening our understanding of the cellular mechanisms underlying ICI therapy.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 08, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (20)

Y

Yohei Nose

Y

Yoshiaki Yasumizu

T

Takuro Saito

Y

Yamami Nakamura

K

Koichi Jinushi

K

Kaoru Fujikawa

K

Kota Momose

K

Kotaro Yamashita

K

Koji Tanaka

K

Kazuyoshi Yamamoto

T

Tomoki Makino

T

Tsuyoshi Takahashi

A

Azumi Ueyama

Y

Yukinori Kurokawa

E

Eiichi Sato

N

Naganari Ohkura

S

Shimon Sakaguchi

H

Hisashi Wada

H

Hidetoshi Eguchi

Y

Yuichiro Doki