Heteroplasmic mitochondrial DNA variants in cardiovascular diseases.
Authors
Griffin, Helen
Hall, Alistair
Caulfield, Mark J
Samani, Nilesh J
Hudson, Gavin
Publication Date
2022-04Journal Title
PLoS Genet
ISSN
1553-7390
Publisher
Public Library of Science (PLoS)
Volume
18
Issue
4
Language
eng
Type
Article
This Version
VoR
Metadata
Show full item recordCitation
Calabrese, C., Pyle, A., Griffin, H., Coxhead, J., Hussain, R., Braund, P. S., Li, L., et al. (2022). Heteroplasmic mitochondrial DNA variants in cardiovascular diseases.. PLoS Genet, 18 (4) https://doi.org/10.1371/journal.pgen.1010068
Description
Funder: NIHR Oxford Biomedical Research Centre
Funder: National Institute for Health Research (NIHR)
Funder: Wolfson Foundation
Abstract
Mitochondria are implicated in the pathogenesis of cardiovascular diseases (CVDs) but the reasons for this are not well understood. Maternally-inherited population variants of mitochondrial DNA (mtDNA) which affect all mtDNA molecules (homoplasmic) are associated with cardiometabolic traits and the risk of developing cardiovascular disease. However, it is not known whether mtDNA mutations only affecting a proportion of mtDNA molecules (heteroplasmic) also play a role. To address this question, we performed a high-depth (~1000-fold) mtDNA sequencing of blood DNA in 1,399 individuals with hypertension (HTN), 1,946 with ischemic heart disease (IHD), 2,146 with ischemic stroke (IS), and 723 healthy controls. We show that the per individual burden of heteroplasmic single nucleotide variants (mtSNVs) increases with age. The age-effect was stronger for low-level heteroplasmies (heteroplasmic fraction, HF, 5-10%), likely reflecting acquired somatic events based on trinucleotide mutational signatures. After correcting for age and other confounders, intermediate heteroplasmies (HF 10-95%) were more common in hypertension, particularly involving non-synonymous variants altering the amino acid sequence of essential respiratory chain proteins. These findings raise the possibility that heteroplasmic mtSNVs play a role in the pathophysiology of hypertension.
Keywords
Cardiovascular Diseases, DNA, Mitochondrial, Humans, Hypertension, Mitochondria, Mitochondrial Diseases, Mutation
Sponsorship
Wellcome Trust (212219/Z/18/Z)
MRC (MR/S035699/1)
Identifiers
35363781, PMC9007378
External DOI: https://doi.org/10.1371/journal.pgen.1010068
This record's URL: https://www.repository.cam.ac.uk/handle/1810/336708
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