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Angiotensin receptor blockers modulate the lupus CD4+ T cell epigenome characterized by TNF family–linked signaling
Andrew P. Hart, Jonathan J. Kotzin, Steffan W. Schulz, Jonathan S. Dunham, Alison L. Keenan, Joshua F. Baker, Andrew D. Wells, Daniel P. Beiting, Terri M. Laufer
Andrew P. Hart, Jonathan J. Kotzin, Steffan W. Schulz, Jonathan S. Dunham, Alison L. Keenan, Joshua F. Baker, Andrew D. Wells, Daniel P. Beiting, Terri M. Laufer
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Research Article Immunology

Angiotensin receptor blockers modulate the lupus CD4+ T cell epigenome characterized by TNF family–linked signaling

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Abstract

In systemic lupus erythematosus (lupus), environmental effects acting within a permissive genetic background lead to autoimmune dysregulation. Dysfunction of CD4+ T cells contributes to pathology by providing help to autoreactive B and T cells, and CD4+ T cell dysfunction coincides with altered DNA methylation and histone modifications of select gene loci. However, chromatin accessibility states of distinct T cell subsets and mechanisms driving heterogeneous chromatin states across patients remain poorly understood. We defined the transcriptome and epigenome of multiple CD4+ T cell populations from patients with lupus and healthy individuals. Most patients with lupus, regardless of disease activity, had enhanced chromatin accessibility bearing hallmarks of inflammatory cytokine signals. Single-cell approaches revealed that chromatin changes extended to naive CD4+ T cells, uniformly affecting naive subpopulations. Transcriptional data and cellular and protein analyses suggested that the TNF family members, TNF-α, LIGHT, and TWEAK, were linked to observed molecular changes and the altered lupus chromatin state. However, we identified a patient subgroup prescribed angiotensin receptor blockers (ARBs), which lacked TNF-linked lupus chromatin accessibility features. These data raise questions about the role of lupus-associated chromatin changes in naive CD4+ T cell activation and differentiation and implicate ARBs in the regulation of disease-driven epigenetic states.

Authors

Andrew P. Hart, Jonathan J. Kotzin, Steffan W. Schulz, Jonathan S. Dunham, Alison L. Keenan, Joshua F. Baker, Andrew D. Wells, Daniel P. Beiting, Terri M. Laufer

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Figure 4

Single-cell multiome analysis of naive Th cells demonstrates ubiquitous dysregulation in lupus.

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Single-cell multiome analysis of naive Th cells demonstrates ubiquitous ...
(A) Pathway enrichment analysis results for 10x Genomics single-cell ATAC–defined (scATAC-defined) DARs of greater accessibility in lupus naive Th cells. Pathways used in enrichment include GO Biological Process and Hallmark gene sets. (B) GSVA enrichment score for lupus-associated DARs (Figure 2C, n = 2,683 regions) among integrated scATAC datasets of patients with lupus and HCs. (C) Uniform manifold approximation and projection (UMAP) dimensional reduction of multiomic single-cell clusters from naive Th cells. Single-cell nuclear RNA and scATAC data from naive Th of lupus and healthy individuals were independently integrated and then combined for cluster analysis and UMAP visualization. (D) Pathway enrichment analysis results for scATAC-defined DARs of cluster 5 in naive Th cells. (E) Frequency of cells among naive Th clusters for individual lupus and healthy participants. (F) Enrichment of signature lupus-associated DARs (Figure 2C, n = 2,683) among naive Th clusters. (G) Peak-gene linkage analysis results depicting chromatin accessibility track (top), gene expression (top right), and peak-gene linkages (bottom) along the IFI44 locus in lupus naive Th cells. Error is reported as SD. Single-cell multiome data include 6 lupus and 3 healthy participants (A–G). *P < 0.05, **P < 0.01, paired 2-tailed t tests (B, E, and F).

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