Related Experiment Video
Updated: May 5, 2026

Noninvasive Assessment of Cardiac Abnormalities in Experimental Autoimmune Myocarditis by Magnetic Resonance Microscopy Imaging in the Mouse
Published on: June 20, 2014
Mitochondrial damage is associated with an early immune response in inclusion body myositis
Felix Kleefeld1,2, Emily Cross3, Daniel Lagos3
1Department of Neurology, Berlin Institute of Health (BIH), Charité-Universitätsmedizin Berlin, Corporate member of Freie Universität Berlin, Humboldt, Universität zu Berlin, 10117 Berlin, Germany.
Abstract:
Polymyositis with mitochondrial pathology (PM-Mito) was first identified in 1997 as a subtype of idiopathic inflammatory myopathy. Recent findings demonstrated significant molecular similarities between PM-Mito and inclusion body myositis (IBM), suggesting a trajectory from early to late IBM and prompting the inclusion of PM-Mito as an IBM precursor (early IBM) within the IBM spectrum. Both PM-Mito and IBM show mitochondrial abnormalities, suggesting that mitochondrial disturbance is a crucial element of IBM pathogenesis. The primary objective of this cross-sectional study was to characterize the mitochondrial phenotype in PM-Mito at histological, ultrastructural and molecular levels and to study the interplay between mitochondrial dysfunction and inflammation. Skeletal muscle biopsies of 27 patients with PM-Mito and 27 with typical IBM were included for morphological and ultrastructural analysis. Mitochondrial DNA (mtDNA) copy number and deletions were assessed by quantitative PCR and long-range PCR, respectively. In addition, full-length single-molecule sequencing of the mtDNA enabled precise mapping of deletions. Protein and RNA levels were studied using unbiased proteomic profiling, immunoblotting and bulk RNA sequencing. Cell-free mtDNA was measured in the serum of IBM patients. We found widespread mitochondrial abnormalities in both PM-Mito and IBM, illustrated by elevated numbers of cytochrome c oxidase (COX)-negative and succinate dehydrogenase (SDH)-positive fibres and prominent ultrastructural abnormalities, with disorganized and concentric cristae within enlarged and dysmorphic mitochondria. mtDNA copy numbers were significantly reduced, and multiple large-scale mtDNA deletions were already evident in PM-Mito compared with healthy age-matched controls, similar to the IBM group. The canonical cyclic GMP-AMP synthase/stimulator of interferon genes inflammatory pathway was activated in PM-Mito and IBM, and we detected elevated levels of circulating cell-free mtDNA indicative of mtDNA leakage. In PM-Mito and IBM, these findings were accompanied by dysregulation of proteins and transcripts linked to the mitochondrial membranes. In summary, we identified that mitochondrial dysfunction with multiple mtDNA deletions and depletion, disturbed mitochondrial ultrastructure and defects of the inner mitochondrial membrane are features of PM-Mito and IBM, underlining the concept of an IBM-spectrum disease. Notably, mitochondrial abnormalities precede tissue remodelling and infiltration by specific T-cell subpopulations (e.g. KLRG1+) characteristic of late IBM. The activation of inflammatory, DNA-sensing pathways might be related to mtDNA release, which would indicate a significant role of mitochondria-associated inflammation in the pathogenesis of IBM-spectrum disease. This study highlights the crucial role of early mitochondrial abnormalities in the pathomechanism of IBM, which might lead to new approaches to therapy.
Insights
Polymyositis with mitochondrial pathology (PM-Mito) and Inclusion Body Myositis (IBM) share mitochondrial defects, including mtDNA deletions and dysfunction. These early mitochondrial abnormalities precede later disease features, suggesting PM-Mito is an early form of IBM.
Area of Science:
- Mitochondrial pathology and inflammatory myopathies
- Molecular and cellular biology of muscle disease
Background:
- Polymyositis with mitochondrial pathology (PM-Mito) is an idiopathic inflammatory myopathy.
- PM-Mito shares molecular similarities with Inclusion Body Myositis (IBM), suggesting it's an early IBM precursor.
- Mitochondrial dysfunction is implicated in the pathogenesis of IBM.
Purpose of the Study:
- To characterize the mitochondrial phenotype in PM-Mito at histological, ultrastructural, and molecular levels.
- To investigate the interplay between mitochondrial dysfunction and inflammation in PM-Mito and IBM.
- To establish PM-Mito as part of the IBM spectrum.
Main Methods:
- Histological and ultrastructural analysis of skeletal muscle biopsies from 27 PM-Mito and 27 IBM patients.
- Assessment of mitochondrial DNA (mtDNA) copy number and deletions using qPCR, long-range PCR, and single-molecule sequencing.
- Proteomic profiling, immunoblotting, RNA sequencing, and measurement of cell-free mtDNA (cf-mtDNA) in serum.
Main Results:
- Both PM-Mito and IBM exhibit widespread mitochondrial abnormalities, including COX-negative fibers and ultrastructural defects.
- Reduced mtDNA copy number and large-scale mtDNA deletions are present in PM-Mito, similar to IBM.
- Activation of the cGAS/STING inflammatory pathway and elevated cf-mtDNA indicate inflammation linked to mtDNA leakage.
Conclusions:
- Mitochondrial dysfunction, mtDNA deletions, depletion, and inner mitochondrial membrane defects are key features of PM-Mito and IBM.
- These mitochondrial abnormalities precede the characteristic tissue remodeling and T-cell infiltration seen in late IBM.
- Mitochondria-associated inflammation, potentially driven by released mtDNA, plays a significant role in the pathogenesis of this IBM spectrum disease.
Related Concept Videos
Translocation of Proteins into the Mitochondria
Sorting of outer membrane proteins:
Mitochondrial outer membrane proteins are of two types: the transmembrane, beta-barrel porins, and the membrane-anchored, alpha-helical proteins. Beta-barrel porin precursors are translocated by the TOM complex and inserted into the outer mitochondrial membrane by the SAM complex. In contrast,...
Myocarditis I: Introduction
Myocarditis II: Clinical Features and Diagnostic Tests
Cellular Injury I: Introduction
Myasthenia Gravis ll: Pathophysiology

