Epigenome-wide mapping identified 517 epigenetic loci linked with dilated cardiomyopathy, of which 27 (46%) were replicated in independent cohorts as novel biomarkers for heart failure.
Case-Control
This multi-omics study identified 517 epigenetic loci and conserved methylation patterns that serve as novel biomarkers for heart failure in patients with dilated cardiomyopathy.
BACKGROUND: Biochemical DNA modification resembles a crucial regulatory layer among genetic information, environmental factors, and the transcriptome. To identify epigenetic susceptibility regions and novel biomarkers linked to myocardial dysfunction and heart failure, we performed the first multi-omics study in myocardial tissue and blood of patients with dilated cardiomyopathy and controls. METHODS: Infinium human methylation 450 was used for high-density epigenome-wide mapping of DNA methylation in left-ventricular biopsies and whole peripheral blood of living probands. RNA deep sequencing was performed on the same samples in parallel. Whole-genome sequencing of all patients allowed exclusion of promiscuous genotype-induced methylation calls. RESULTS: . Twenty-seven (46%) of these loci could be replicated in independent cohorts, underlining the role of epigenetic regulation of key cardiac transcription regulators. Using a staged multi-omics study design, we link a subset of 517 epigenetic loci with dilated cardiomyopathy and cardiac gene expression. Furthermore, we identified distinct epigenetic methylation patterns that are conserved across tissues, rendering these CpGs novel epigenetic biomarkers for heart failure. CONCLUSIONS: The present study provides to our knowledge the first epigenome-wide association study in living patients with heart failure using a multi-omics approach.
Meder et al. (Thu,) conducted a case-control in Dilated cardiomyopathy and heart failure. DNA methylation patterns vs. Controls was evaluated on Epigenetic loci linked with dilated cardiomyopathy and cardiac gene expression. Epigenome-wide mapping identified 517 epigenetic loci linked with dilated cardiomyopathy, of which 27 (46%) were replicated in independent cohorts as novel biomarkers for heart failure.