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Mitochondrial DNA copy number can influence mortality and cardiovascular disease via methylation of nuclear DNA CpGs
- Source :
- Paediatrics Publications, Genome Medicine, Genome Medicine, Vol 12, Iss 1, Pp 1-17 (2020)
- Publication Year :
- 2020
- Publisher :
- Scholarship@Western, 2020.
-
Abstract
- Background Mitochondrial DNA copy number (mtDNA-CN) has been associated with a variety of aging-related diseases, including all-cause mortality. However, the mechanism by which mtDNA-CN influences disease is not currently understood. One such mechanism may be through regulation of nuclear gene expression via the modification of nuclear DNA (nDNA) methylation. Methods To investigate this hypothesis, we assessed the relationship between mtDNA-CN and nDNA methylation in 2507 African American (AA) and European American (EA) participants from the Atherosclerosis Risk in Communities (ARIC) study. To validate our findings, we assayed an additional 2528 participants from the Cardiovascular Health Study (CHS) (N = 533) and Framingham Heart Study (FHS) (N = 1995). We further assessed the effect of experimental modification of mtDNA-CN through knockout of TFAM, a regulator of mtDNA replication, via CRISPR-Cas9. Results Thirty-four independent CpGs were associated with mtDNA-CN at genome-wide significance (P − 8). Meta-analysis across all cohorts identified six mtDNA-CN-associated CpGs at genome-wide significance (P − 8). Additionally, over half of these CpGs were associated with phenotypes known to be associated with mtDNA-CN, including coronary heart disease, cardiovascular disease, and mortality. Experimental modification of mtDNA-CN demonstrated that modulation of mtDNA-CN results in changes in nDNA methylation and gene expression of specific CpGs and nearby transcripts. Strikingly, the “neuroactive ligand receptor interaction” KEGG pathway was found to be highly overrepresented in the ARIC cohort (P = 5.24 × 10− 12), as well as the TFAM knockout methylation (P = 4.41 × 10− 4) and expression (P = 4.30 × 10− 4) studies. Conclusions These results demonstrate that changes in mtDNA-CN influence nDNA methylation at specific loci and result in differential expression of specific genes that may impact human health and disease via altered cell signaling.
- Subjects :
- Epigenomics
lcsh:Medicine
Gene Expression
0302 clinical medicine
Framingham Heart Study
Odds Ratio
Genetics (clinical)
Genetics
0303 health sciences
Methylation
Prognosis
16. Peace & justice
Cardiovascular disease
Mitochondrial DNA
Mitochondria
3. Good health
Nuclear DNA
DNA-Binding Proteins
Phenotype
Cardiovascular Diseases
Gene Knockdown Techniques
030220 oncology & carcinogenesis
Molecular Medicine
Disease Susceptibility
Signal Transduction
lcsh:QH426-470
DNA Copy Number Variations
Quantitative Trait Loci
Biology
DNA, Mitochondrial
Polymorphism, Single Nucleotide
Mitochondrial Proteins
03 medical and health sciences
Humans
Mortality
Molecular Biology
Gene
030304 developmental biology
Research
lcsh:R
DNA Methylation
TFAM
Human genetics
lcsh:Genetics
Cross-Sectional Studies
CpG Islands
Genome-Wide Association Study
Transcription Factors
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Paediatrics Publications, Genome Medicine, Genome Medicine, Vol 12, Iss 1, Pp 1-17 (2020)
- Accession number :
- edsair.doi.dedup.....90c87b7c6a4547e6e82b613fb727a92c