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Single-cell RNA sequencing reveals clonally expanded CD4+ tissue-resident memory T cells in histidyl-tRNA synthetase–induced myositis
Decheng Li, Daniel P. Reay, Iago Pinal-Fernandez, Maria Casal-Dominguez, Andrew L. Mammen, Sarah L. Gaffen, Timothy B. Oriss, Dana P. Ascherman
Decheng Li, Daniel P. Reay, Iago Pinal-Fernandez, Maria Casal-Dominguez, Andrew L. Mammen, Sarah L. Gaffen, Timothy B. Oriss, Dana P. Ascherman
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Research Article Immunology

Single-cell RNA sequencing reveals clonally expanded CD4+ tissue-resident memory T cells in histidyl-tRNA synthetase–induced myositis

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Abstract

The precise mechanisms underlying the pathogenesis of idiopathic inflammatory myopathy (IIM) remain undefined. However, there has been increasing recognition that tissue-resident memory T cells (TRMs) play an important role in the pathogenesis of systemic autoimmune disease. In IIM, TRM-associated transcriptional signatures have been reported but on a very limited basis. By using multimodal single-cell RNA-sequencing analysis in our established murine model of histidyl-tRNA synthetase–induced myositis, we identified a prominent population of CD4+ TRMs in inflamed skeletal muscle. Muscle CD4+ TRMs exhibited high expression of genes encoding Cd69, Cxcr6, Runx3, and Prdm1, alongside low expression of Klf2, Ccr7, Sell, S1pr1, and Tcf7 — a profile that is generally consistent with previous reports of TRM gene signature and that we validate through comparison with transcriptomic profiles of human muscle tissue. Detailed pathway analysis in our model indicates that muscle CD4+ TRMs contribute to innate immune regulatory pathways enriched for TNF and IFN-γ signaling. Furthermore, analysis of TCR clonotype distribution and CDR3 sequence similarity revealed pronounced clonal expansion of CD4+ TRMs relative to other T cell subsets — a pattern that remained stable from 2 to 6 weeks after immunization. Collectively, these results suggest a potential role for CD4+ TRMs in the pathogenesis of autoimmune myositis.

Authors

Decheng Li, Daniel P. Reay, Iago Pinal-Fernandez, Maria Casal-Dominguez, Andrew L. Mammen, Sarah L. Gaffen, Timothy B. Oriss, Dana P. Ascherman

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Figure 3

T/NK cell subclusters in muscle tissue from HRS-induced myositis.

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T/NK cell subclusters in muscle tissue from HRS-induced myositis.
(A) UM...
(A) UMAP visualization of subsets of T/NK cells isolated from muscle tissue in HRS-induced myositis. (B) Percentage of each subcluster in total T/NK cell counts displayed across different samples. (C) Dot plot displaying the expression level of highly expressed genes for each subcluster. (D) Normalized expression of Cd4, Cd8a, Cd69, Cd103, Cxcr6, and Ifng visualized in violin plots. (E) Cells isolated from muscle were analyzed by spectral flow cytometry. Data show CD3+CD4+, CD3+FoxP3+, and CD3+CD161+ cells; more detailed assessment of CD3+CD4+CD69+ cells demonstrates a CD44+CD62LloCCR7loCXCR6hi phenotype. Also shown is IFN-γ expression with or without in vitro stimulation with αTCR activation beads and PMA/ionomycin. (F) Pseudotime trajectory combined with identified cell clusters in T/NK subsets, visualized in the depicted UMAP. Color corresponds to the clusters shown in A. (G) Pseudotime values across different T/NK subsets, visualized via violin plots and aligned from low to high.

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