Transcriptome network analysis implicates CX3CR1-positive type 3 dendritic cells in non-infectious uveitis

Author:

Hiddingh Sanne12,Pandit Aridaman23ORCID,Verhagen Fleurieke123,Rijken Rianne24,Servaas Nila Hendrika24ORCID,Wichers Rina CGK24,Loon Ninette H ten Dam-van3,Imhof Saskia M13,Radstake Timothy RDJ5,de Boer Joke H13,Kuiper Jonas JW123ORCID

Affiliation:

1. Ophthalmo-Immunology, University Medical Center Utrecht, Utrecht University

2. Center for Translational Immunology, University Medical Center Utrecht, Utrecht University

3. Department of Ophthalmology, University Medical Center Utrecht, Utrecht University

4. Department of Rheumatology & Clinical Immunology, University Medical Center Utrecht, Utrecht University

5. University Medical Center Utrecht and Utrecht University

Abstract

Background:Type I interferons (IFNs) promote the expansion of subsets of CD1c+ conventional dendritic cells (CD1c+ DCs), but the molecular basis of CD1c+ DCs involvement in conditions not associated without elevated type I IFNs remains unclear.Methods:We analyzed CD1c+ DCs from two cohorts of non-infectious uveitis patients and healthy donors using RNA-sequencing followed by high-dimensional flow cytometry to characterize the CD1c+ DC populations.Results:We report that the CD1c+ DCs pool from patients with non-infectious uveitis is skewed toward a gene module with the chemokine receptor CX3CR1 as the key hub gene. We confirmed these results in an independent case–control cohort and show that the disease-associated gene module is not mediated by type I IFNs. An analysis of peripheral blood using flow cytometry revealed that CX3CR1+ DC3s were diminished, whereas CX3CR1− DC3s were not. Stimulated CX3CR1+ DC3s secrete high levels of inflammatory cytokines, including TNF-alpha, and CX3CR1+ DC3 like cells can be detected in inflamed eyes of patients.Conclusions:These results show that CX3CR1+ DC3s are implicated in non-infectious uveitis and can secrete proinflammatory mediators implicated in its pathophysiology.Funding:The presented work is supported by UitZicht (project number #2014-4, #2019-10, and #2021-4). The funders had no role in the design, execution, interpretation, or writing of the study.

Funder

UitZicht

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference75 articles.

1. HTSeq -- a python framework to work with high-throughput sequencing data;Anders;Bioinformatics,2015

2. RelB deficiency in dendritic cells protects from autoimmune inflammation due to spontaneous accumulation of tissue t regulatory cells;Andreas;Journal of Immunology,2019

3. ScGate: Marker-based purification of cell types from heterogeneous single-cell RNA-seq datasets;Andreatta;Bioinformatics,2022

4. Scgate: Marker-based purification of cell types from heterogeneous single-cell RNA-Seq Datasets;Andreatta,2023

5. UCell: robust and scalable single-cell gene signature scoring;Andreatta,2023

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