ST2/IL-33 axis blockade inhibits regulatory T cell cytotoxicity towards CD8 T cells in the leukemic niche

H Hua Jiang D Denggang Fu S Santhosh Kumar Pasupuleti B Baskar Ramdas A Alan Long A Abdulraouf M. Ramadan J Jinfeng Yang (Department of Engineering) R Ramesh Kumar J Jessica H. Hartman B B. Jacob Kendrick E Ed Simpson H Hongyu Gao Y Yunlong Liu D Drew Moore S Suganya Subramanian S Stefano Berto A Anilkumar Gopalakrishnapillai S Sonali P. Barwe H Hongfen Guo N Nai-Kong V. Cheung R Reuben Kapur S Sophie Paczesny

Abstract

Abstract Acute myeloid leukemia (AML) patients present with CD8 exhaustion signatures, and pharmacologic inhibition of checkpoints can have therapeutic benefit. The alarmin IL-33 and its receptor STimulation-2 (ST2) promote activation of tissue-regulatory T cells (Treg cells) and accelerate malignant progression in solid tumors, but their role in leukemia remains unclear. Here, we show that ST2+ Treg cells are enriched in bone marrow (BM) of humans and mice with AML and promote CD8+ T cells depletion and exhaustion. ST2 deficiency in Treg cells restores CD8+ T cell function, decreasing AML growth via retention of ST2+ Treg cells precursors in lymph nodes. AML-activated ST2+ Treg cells lack T-bet, IFN-γ and Bcl-6, and kill intratumoral CD8+ T cells by amplified granzyme B-mediated cytotoxicity compared to non-AML primed Treg cells. Engineered anti-ST2 antibodies induce ST2+ Treg cells apoptosis to extend survival in AML models. Together, our findings suggest that ST2 is a potential checkpoint target for AML immunotherapy.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 21, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (22)

H

Hua Jiang

D

Denggang Fu

S

Santhosh Kumar Pasupuleti

B

Baskar Ramdas

A

Alan Long

A

Abdulraouf M. Ramadan

J

Jinfeng Yang

Department of Engineering

R

Ramesh Kumar

J

Jessica H. Hartman

B

B. Jacob Kendrick

E

Ed Simpson

H

Hongyu Gao

Y

Yunlong Liu

D

Drew Moore

S

Suganya Subramanian

S

Stefano Berto

A

Anilkumar Gopalakrishnapillai

S

Sonali P. Barwe

H

Hongfen Guo

N

Nai-Kong V. Cheung

R

Reuben Kapur

S

Sophie Paczesny