GARP+ Erythroid Regulatory Cells (G-ERCs) define spatially organized immunosuppressive niches that restrain anti-tumor immunity 2259805

M Maria Velegraki J Jordan Krull P Payton Weltge (1Pelotonia Institute for Immunology-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, United States) C Cankun Wang (7The Ohio State University, Biomedical Informatics, Columbus, United States) M Maryam Soltani-asl (1Pelotonia Institute for Immunology-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, United States) D Donna Bucci (Pelotonia Institute for Immuno-oncology, Comprehensive Cancer Center - James Cancer Hospital and Solove Research Institute, College of Medicine, The Ohio State University) Y Yuzhou Chang (Ohio State University) A Anjun Ma Q Qin Ma (School of Chemistry and Molecular Engineering, State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, Nanjing 211816, China) Z Zihai Li

Abstract

Abstract Introduction Erythroid precursors have emerged as regulators of tumor immunity, yet their suppressive mediators and spatial context remain unclear. We identified a distinct population of GARP+ Erythroid Regulatory Cells (G-ERCs) that express the TGFβ docking receptor GARP (encoded by LRRC32). Given GARP’s known role in immune regulation, we hypothesized that these erythroid-derived cells create immunosuppressive niches within the tumor microenvironment (TME) that dampen antitumor responses. Methods Erythroid-specific Garp-knockout (KO) mice (EporRCreLrrc32fl/fl) bearing MB49 bladder tumors were analyzed by high dimensional flow cytometry, validated by adoptive co-transfer of Pmel CD8+ T cells with Garp-KO or WT G-ERCs. 10x Visium transcriptomics were used to identify Lrrc32+ regions with positive signature defining G-ERCs. Multiparametric immunofluorescence (mIF) and immune deconvolution validated G-ERC localization and surrounding immune composition. Results Tumor growth was significantly slower in erythroid-specific Garp-KO mice compared to WT controls, and in tumor-bearing mice receiving Pmel cells co-transferred with Garp-KO ERCs versus WT G-ERCs. Spatial transcriptomics revealed organized G-ERC enriched regions, enriched for TGFβ, hypoxia, and oxidative-stress pathways. Integrated mIF and deconvolution confirmed that G-ERC niches were surrounded by areas with reduced dendritic cells and B cells, increased myeloid cells, and lower cytotoxic and interferon-response activity. Garp deletion remodeled the TME, increasing CD8+ infiltration and effector activation, enhanced CD8+ T-cell effector differentiation while reducing exhaustion programs, as also validated by flow cytometry. Circulating G-ERC like cells were also detected in patients with cancer. Conclusion G-ERCs represent a regulatory erythroid subset forming spatially organized niches suppressing T-cell immunity. Targeting erythroid GARP enhances antitumor responses and represents a novel link between erythropoiesis and cancer immunity. Funding Source n/a Topic Categories Tumor Immunology: Cellular Responses and Tumor Microevironment (TIME)

Article Details

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

Authors (10)

M

Maria Velegraki

J

Jordan Krull

P

Payton Weltge

1Pelotonia Institute for Immunology-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, United States

C

Cankun Wang

7The Ohio State University, Biomedical Informatics, Columbus, United States

M

Maryam Soltani-asl

1Pelotonia Institute for Immunology-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, United States

D

Donna Bucci

Pelotonia Institute for Immuno-oncology, Comprehensive Cancer Center - James Cancer Hospital and Solove Research Institute, College of Medicine, The Ohio State University

Y

Yuzhou Chang

Ohio State University

A

Anjun Ma

Q

Qin Ma

School of Chemistry and Molecular Engineering, State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, Nanjing 211816, China

Z

Zihai Li