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Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis

Sarcoidosis is a systemic inflammatory disease characterized by infiltration of immune cells into granulomas. Previous gene expression studies using heterogeneous cell mixtures lack insight into cell-type-specific immune dysregulation. We performed the first single-cell RNA-sequencing study of sarco...

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Autores principales: Garman, Lori, Pelikan, Richard C., Rasmussen, Astrid, Lareau, Caleb A., Savoy, Kathryn A., Deshmukh, Umesh S., Bagavant, Harini, Levin, Albert M., Daouk, Salim, Drake, Wonder P., Montgomery, Courtney G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7753017/
https://www.ncbi.nlm.nih.gov/pubmed/33363531
http://dx.doi.org/10.3389/fimmu.2020.567342
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author Garman, Lori
Pelikan, Richard C.
Rasmussen, Astrid
Lareau, Caleb A.
Savoy, Kathryn A.
Deshmukh, Umesh S.
Bagavant, Harini
Levin, Albert M.
Daouk, Salim
Drake, Wonder P.
Montgomery, Courtney G.
author_facet Garman, Lori
Pelikan, Richard C.
Rasmussen, Astrid
Lareau, Caleb A.
Savoy, Kathryn A.
Deshmukh, Umesh S.
Bagavant, Harini
Levin, Albert M.
Daouk, Salim
Drake, Wonder P.
Montgomery, Courtney G.
author_sort Garman, Lori
collection PubMed
description Sarcoidosis is a systemic inflammatory disease characterized by infiltration of immune cells into granulomas. Previous gene expression studies using heterogeneous cell mixtures lack insight into cell-type-specific immune dysregulation. We performed the first single-cell RNA-sequencing study of sarcoidosis in peripheral immune cells in 48 patients and controls. Following unbiased clustering, differentially expressed genes were identified for 18 cell types and bioinformatically assessed for function and pathway enrichment. Our results reveal persistent activation of circulating classical monocytes with subsequent upregulation of trafficking molecules. Specifically, classical monocytes upregulated distinct markers of activation including adhesion molecules, pattern recognition receptors, and chemokine receptors, as well as enrichment of immunoregulatory pathways HMGB1, mTOR, and ephrin receptor signaling. Predictive modeling implicated TGFβ and mTOR signaling as drivers of persistent monocyte activation. Additionally, sarcoidosis T cell subsets displayed patterns of dysregulation. CD4 naïve T cells were enriched for markers of apoptosis and Th17/T(reg) differentiation, while effector T cells showed enrichment of anergy-related pathways. Differentially expressed genes in regulatory T cells suggested dysfunctional p53, cell death, and TNFR2 signaling. Using more sensitive technology and more precise units of measure, we identify cell-type specific, novel inflammatory and regulatory pathways. Based on our findings, we suggest a novel model involving four convergent arms of dysregulation: persistent hyperactivation of innate and adaptive immunity via classical monocytes and CD4 naïve T cells, regulatory T cell dysfunction, and effector T cell anergy. We further our understanding of the immunopathology of sarcoidosis and point to novel therapeutic targets.
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spelling pubmed-77530172020-12-23 Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis Garman, Lori Pelikan, Richard C. Rasmussen, Astrid Lareau, Caleb A. Savoy, Kathryn A. Deshmukh, Umesh S. Bagavant, Harini Levin, Albert M. Daouk, Salim Drake, Wonder P. Montgomery, Courtney G. Front Immunol Immunology Sarcoidosis is a systemic inflammatory disease characterized by infiltration of immune cells into granulomas. Previous gene expression studies using heterogeneous cell mixtures lack insight into cell-type-specific immune dysregulation. We performed the first single-cell RNA-sequencing study of sarcoidosis in peripheral immune cells in 48 patients and controls. Following unbiased clustering, differentially expressed genes were identified for 18 cell types and bioinformatically assessed for function and pathway enrichment. Our results reveal persistent activation of circulating classical monocytes with subsequent upregulation of trafficking molecules. Specifically, classical monocytes upregulated distinct markers of activation including adhesion molecules, pattern recognition receptors, and chemokine receptors, as well as enrichment of immunoregulatory pathways HMGB1, mTOR, and ephrin receptor signaling. Predictive modeling implicated TGFβ and mTOR signaling as drivers of persistent monocyte activation. Additionally, sarcoidosis T cell subsets displayed patterns of dysregulation. CD4 naïve T cells were enriched for markers of apoptosis and Th17/T(reg) differentiation, while effector T cells showed enrichment of anergy-related pathways. Differentially expressed genes in regulatory T cells suggested dysfunctional p53, cell death, and TNFR2 signaling. Using more sensitive technology and more precise units of measure, we identify cell-type specific, novel inflammatory and regulatory pathways. Based on our findings, we suggest a novel model involving four convergent arms of dysregulation: persistent hyperactivation of innate and adaptive immunity via classical monocytes and CD4 naïve T cells, regulatory T cell dysfunction, and effector T cell anergy. We further our understanding of the immunopathology of sarcoidosis and point to novel therapeutic targets. Frontiers Media S.A. 2020-12-08 /pmc/articles/PMC7753017/ /pubmed/33363531 http://dx.doi.org/10.3389/fimmu.2020.567342 Text en Copyright © 2020 Garman, Pelikan, Rasmussen, Lareau, Savoy, Deshmukh, Bagavant, Levin, Daouk, Drake and Montgomery http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Garman, Lori
Pelikan, Richard C.
Rasmussen, Astrid
Lareau, Caleb A.
Savoy, Kathryn A.
Deshmukh, Umesh S.
Bagavant, Harini
Levin, Albert M.
Daouk, Salim
Drake, Wonder P.
Montgomery, Courtney G.
Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis
title Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis
title_full Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis
title_fullStr Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis
title_full_unstemmed Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis
title_short Single Cell Transcriptomics Implicate Novel Monocyte and T Cell Immune Dysregulation in Sarcoidosis
title_sort single cell transcriptomics implicate novel monocyte and t cell immune dysregulation in sarcoidosis
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7753017/
https://www.ncbi.nlm.nih.gov/pubmed/33363531
http://dx.doi.org/10.3389/fimmu.2020.567342
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