bioRxiv · 10.1101/2022.01.13.476250
Naive arthritogenic SKG T cells have a defect in anergy and a repertoire pruned by superantigen
Abstract
How autoreactive CD4 T cells develop to cause rheumatoid arthritis remains unknown. We used a reporter for antigen-receptor signaling in the SKG autoimmune arthritis model to profile a T cell subpopulation enriched for arthritogenic naive CD4 T cells before arthritis onset by bulk and single cell RNA and T cell antigen-receptor (TCR) sequencing. Our analyses reveal that despite their impaired proximal TCR signaling, a subset of SKG naive CD4 T cells that have recently encountered endogenous antigen upregulate gene programs associated with positive regulation of T cell activation and cytokine signaling at higher levels than wild type cells in the pre-disease state. These arthritogenic cells also induce genes associated with negative regulation of T cell activation but do so less efficiently than wild type cells. Furthermore, their TCR sequences exhibit a previously unrecognized biased peripheral TCR V{beta} repertoire likely driven by endogenous viral superantigens. These particular V{beta}s, known to recognize endogenous mouse mammary tumor virus (MMTV) superantigen, are further expanded in arthritic joints. Our results demonstrate that autoreactive naive CD4 T cells which recognize endogenous viral superantigens are poised to cause disease by their altered transcriptome. Summary blurbSelf-reactive SKG T cells that escaped negative selection harbor an independent defect in anergy that, together with chronic antigen stimulation, sets the stage for disease. Moreover, we propose a novel role for endogenous mouse mammary tumor virus (MMTV) superantigen in promoting arthritogenic T cell responses.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Ashouri, J. F., McCarthy, E., Yu, S., Perlmutter, N., Lin, C., DeRisi, J., Ye, C. J., Weiss, A.. 2022-01-16. Naive arthritogenic SKG T cells have a defect in anergy and a repertoire pruned by superantigen. https://doi.org/10.1101/2022.01.13.476250
Cite the original work for its findings. Save a collection to share your selection of sources.