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Updated: Jul 5, 2025

Author Spotlight: Isolation and Culture of Primary Synovial Macrophages and Fibroblasts from Murine Arthritis Tissue
Published on: February 24, 2023
PD-1 signaling uncovers a pathogenic subset of T cells in inflammatory arthritis
Johanna Straube1,2, Shoiab Bukhari1, Shalom Lerrer1
1Columbia Center for Translational Immunology, Columbia University Medical Center, 650 W 168 St. BB-1701F, New York, NY, 10032, USA.
Background:
PD-1 is an immune checkpoint on T cells, and interventions to block this receptor result in T cell activation and enhanced immune response to tumors and pathogens. Reciprocally, despite a decade of research, approaches to treat autoimmunity with PD-1 agonists have only had limited successful. To resolve this, new methods must be developed to augment PD-1 function beyond engaging the receptor.
Methods:
We conducted a flow cytometry analysis of T cells isolated from the peripheral blood and synovial fluid of patients with rheumatoid arthritis. In addition, we performed a genome-wide CRISPR/Cas9 screen to identify genes associated with PD-1 signaling. We further analyzed genes involved in PD-1 signaling using publicly available bulk and single-cell RNA sequencing datasets.
Results:
Our screen confirmed known regulators in proximal PD-1 signaling and, importantly, identified an additional 1112 unique genes related to PD-1 ability to inhibit T cell functions. These genes were strongly associated with the response of cancer patients to PD-1 blockades and with high tumor immune dysfunction and exclusion scores, confirming their role downstream of PD-1. Functional annotation revealed that the most significant genes uncovered were those associated with known immune regulation processes. Remarkably, these genes were considerably downregulated in T cells isolated from patients with inflammatory arthritis, supporting their overall inhibitory functions. A study of rheumatoid arthritis single-cell RNA sequencing data demonstrated that five genes, KLRG1, CRTAM, SLAMF7, PTPN2, and KLRD1, were downregulated in activated and effector T cells isolated from synovial fluids. Backgating these genes to canonical cytotoxic T cell signatures revealed PD-1+ HLA-DRHIGH KLRG1LOW T cells as a novel inflammatory subset of T cells.
Conclusions:
We concluded that PD-1+ HLA-DRHIGH KLRG1LOW T cells are a potential target for future PD-1 agonists to treat inflammatory diseases. Our study uncovers new genes associated with PD-1 downstream functions and, therefore, provides a comprehensive resource for additional studies that are much needed to characterize the role of PD-1 in the synovial subset of T cells.
Insights
New research identifies a novel T cell subset, PD-1+ HLA-DRHIGH KLRG1LOW, as a potential target for treating inflammatory diseases like rheumatoid arthritis. This finding expands understanding of PD-1 signaling in immune regulation.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- Programmed cell death protein 1 (PD-1) is an immune checkpoint on T cells, crucial for regulating immune responses.
- Current PD-1 blockade therapies are effective against tumors but have limited success in treating autoimmune diseases.
- Novel strategies are needed to enhance PD-1 function for autoimmune disease treatment.
Purpose of the Study:
- To identify novel genes and pathways associated with PD-1 signaling.
- To explore the role of PD-1 downstream functions in T cells from patients with inflammatory arthritis.
- To discover new therapeutic targets for autoimmune diseases.
Main Methods:
- Flow cytometry analysis of T cells from rheumatoid arthritis patients.
- Genome-wide CRISPR/Cas9 screening to identify PD-1 signaling-associated genes.
- Analysis of publicly available RNA sequencing datasets (bulk and single-cell).
Main Results:
- 1112 unique genes associated with PD-1's T cell inhibition function were identified.
- These genes are linked to anti-cancer immunotherapy response and tumor immune exclusion.
- Five key genes (KLRG1, CRTAM, SLAMF7, PTPN2, KLRD1) were downregulated in inflammatory arthritis T cells.
- A novel T cell subset, PD-1+ HLA-DRHIGH KLRG1LOW, was identified in synovial fluid.
Conclusions:
- PD-1+ HLA-DRHIGH KLRG1LOW T cells represent a potential therapeutic target for inflammatory diseases.
- The study provides a comprehensive resource of genes involved in PD-1 downstream signaling.
- Further research is needed to fully characterize PD-1's role in synovial T cell subsets.
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