Regulatory T Cell Insufficiency in Autoimmune Diabetes Is Driven by Selective Loss of Neuropilin-1 on Intraislet Regulatory T Cells

Author:

Grebinoski Stephanie123ORCID,Pieklo Gwenyth13ORCID,Zhang Qianxia1234ORCID,Visperas Anabelle13,Cui Jian13ORCID,Goulet Jordana1ORCID,Xiao Hanxi567,Brunazzi Erin A.13,Cardello Carly13ORCID,Herrada Andrés A.4,Das Jishnu7ORCID,Workman Creg J.134ORCID,Vignali Dario A. A.1348ORCID

Affiliation:

1. *Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA

2. †Graduate Program of Microbiology and Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA

3. ‡Tumor Microenvironment Center, UPMC Hillman Cancer Center, Pittsburgh, PA

4. §Department of Immunology, St. Jude Children’s Research Hospital, Memphis, TN

5. ¶Center for Systems Immunology, Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA

6. ǁDepartment of Computational & Systems Biology, University of Pittsburgh School of Medicine, Pittsburgh, PA

7. #CMU-Pitt Joint Computational Biology, School of Medicine, University of Pittsburgh, Pittsburgh, PA

8. **Cancer Immunology and Immunotherapy Program, UPMC Hillman Cancer Center, Pittsburgh PA

Abstract

Abstract Approaches to reverse or limit regulatory T cell (Treg) insufficiency are of great interest for development of immunotherapeutic treatments for autoimmune patients, including type 1 diabetes. Treg insufficiency is heavily implicated in the progression of autoimmune diabetes in the NOD mouse model and is characterized by defects in Treg numbers, development, and/or function. Utilizing a Treg-centric screen, we show that intraislet Tregs have a uniquely dysfunctional phenotype, hallmarked by an almost complete lack of neuropilin-1 (Nrp1), a cell surface receptor required to maintain Treg stability. Intraislet Nrp1– Tregs exhibit hallmark features of fragility, including reduced suppressive capacity, decreased CD73 and Helios, and increased Rorγt and Tbet. Intraislet Nrp1– Tregs also exhibit decreased Foxp3 expression on a per cell basis, suggesting that Nrp1 may also be required for long-term Treg stability. Mechanistically, Treg-restricted augmentation of Nrp1 expression limited the onset of autoimmune diabetes in NOD mice suggesting that Nrp1 critically impacts intraislet Treg function. Transcriptional analysis showed that Nrp1 restoration led to an increase in markers and pathways of TCR signaling, survival, and suppression, and when Nrp1 protein expression is examined by cellular indexing of transcriptomes and epitopes by sequencing, significant differences were observed between Nrp1+ and Nrp1– Tregs in all tissues, particularly in markers of Treg fragility. This translated into substantive differences between Nrp1+ and Nrp1– Tregs that afforded the former with a competitive advantage in the islets. Taken together, these data suggest that maintenance of Nrp1 expression and signaling on Tregs limits diabetes onset and may serve as a strategy to combat Treg insufficiency in autoimmune disease.

Funder

HHS | NIH | NIDDK | Division of Diabetes, Endocrinology, and Metabolic Diseases

HHS | NIH | NIAID | Division of Intramural Research

Publisher

The American Association of Immunologists

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