Role of CD14+ monocyte-derived oxidised mitochondrial DNA in the inflammatory interferon type 1 signature in juvenile dermatomyositis

Author:

Wilkinson Meredyth G LlORCID,Moulding DaleORCID,McDonnell Thomas C RORCID,Orford Michael,Wincup ChrisORCID,Ting Joanna Y JORCID,Otto Georg WORCID,Restuadi RestuadiORCID,Kelberman DanielORCID,Papadopoulou CharalampiaORCID,Castellano SergiORCID,Eaton SimonORCID,Deakin Claire TORCID,Rosser Elizabeth CORCID,Wedderburn Lucy RORCID

Abstract

ObjectivesTo define the host mechanisms contributing to the pathological interferon (IFN) type 1 signature in Juvenile dermatomyositis (JDM).MethodsRNA-sequencing was performed on CD4+, CD8+, CD14+and CD19+cells sorted from pretreatment and on-treatment JDM (pretreatment n=10, on-treatment n=11) and age/sex-matched child healthy-control (CHC n=4) peripheral blood mononuclear cell (PBMC). Mitochondrial morphology and superoxide were assessed by fluorescence microscopy, cellular metabolism by13C glucose uptake assays, and oxidised mitochondrial DNA (oxmtDNA) content by dot-blot. Healthy-control PBMC and JDM pretreatment PBMC were cultured with IFN-α, oxmtDNA, cGAS-inhibitor, TLR-9 antagonist and/orn-acetyl cysteine (NAC). IFN-stimulated gene (ISGs) expression was measured by qPCR. Total numbers of patient and controls for functional experiments, JDM n=82, total CHC n=35.ResultsDysregulated mitochondrial-associated gene expression correlated with increased ISG expression in JDM CD14+ monocytes. Altered mitochondrial-associated gene expression was paralleled by altered mitochondrial biology, including ‘megamitochondria’, cellular metabolism and a decrease in gene expression of superoxide dismutase (SOD)1. This was associated with enhanced production of oxidised mitochondrial (oxmt)DNA. OxmtDNA induced ISG expression in healthy PBMC, which was blocked by targeting oxidative stress and intracellular nucleic acid sensing pathways. Complementary experiments showed that, under in vitro experimental conditions, targeting these pathways via the antioxidant drug NAC, TLR9 antagonist and to a lesser extent cGAS-inhibitor, suppressed ISG expression in pretreatment JDM PBMC.ConclusionsThese results describe a novel pathway where altered mitochondrial biology in JDM CD14+ monocytes lead to oxmtDNA production and stimulates ISG expression. Targeting this pathway has therapeutical potential in JDM and other IFN type 1-driven autoimmune diseases.

Funder

Advanced Medical Research Foundation

Versus Arthritis

Action Medical Research

Cure JM Foundation

Kennedy Trust for Rheumatology Research

NIHR Biomedical Research Centre, Great Ormond Street Hospital

Medical Research Council

Henry Smith Charity

Wellcome Trust

Myositis UK

Great Ormond Street Hospital Charity

Publisher

BMJ

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,Immunology and Allergy,Rheumatology

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