GARP+ Erythroid Regulatory Cells (G-ERCs) define spatially organized immunosuppressive niches that restrain anti-tumor immunity 2259805
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
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (10)
Maria Velegraki
Jordan Krull
Payton Weltge
1Pelotonia Institute for Immunology-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, United States
Cankun Wang
7The Ohio State University, Biomedical Informatics, Columbus, United States
Maryam Soltani-asl
1Pelotonia Institute for Immunology-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, United States
Donna Bucci
Pelotonia Institute for Immuno-oncology, Comprehensive Cancer Center - James Cancer Hospital and Solove Research Institute, College of Medicine, The Ohio State University
Yuzhou Chang
Ohio State University
Anjun Ma
Qin Ma
School of Chemistry and Molecular Engineering, State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, Nanjing 211816, China
Zihai Li