Heteroplasmic mitochondrial DNA variants in cardiovascular diseases

Claudia Calabrese1,2, Angela Pyle3, Helen Griffin3

  • 1Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedical Campus, Cambridge, United Kingdom.

Plos Genetics
|April 1, 2022
PubMed

Insights

Heteroplasmic mitochondrial DNA mutations increase with age and are linked to hypertension. These variants, affecting a proportion of mitochondrial DNA, may contribute to cardiovascular disease development.

Area of Science:

  • Genetics
  • Cardiology
  • Mitochondrial Biology

Background:

  • Mitochondria play a role in cardiovascular disease (CVD) pathogenesis.
  • Homoplasmic mitochondrial DNA (mtDNA) variants are linked to cardiometabolic traits and CVD risk.
  • The role of heteroplasmic mtDNA mutations in CVD is unclear.

Purpose of the Study:

  • To investigate the role of heteroplasmic mitochondrial DNA single nucleotide variants (mtSNVs) in cardiovascular diseases.
  • To determine if heteroplasmic mtSNVs are associated with hypertension, ischemic heart disease, or ischemic stroke.

Main Methods:

  • High-depth mtDNA sequencing of blood DNA from 1,399 individuals with hypertension, 1,946 with ischemic heart disease, 2,146 with ischemic stroke, and 723 controls.
  • Analysis of heteroplasmic variant burden, heteroplasmic fraction (HF), and variant type (synonymous/non-synonymous).
  • Statistical correction for age and other potential confounders.

Main Results:

  • The burden of heteroplasmic mtSNVs increases with age, particularly low-level heteroplasmies (HF 5-10%), suggesting acquired somatic events.
  • Intermediate heteroplasmies (HF 10-95%) were more prevalent in individuals with hypertension after adjusting for confounders.
  • Non-synonymous variants affecting respiratory chain proteins were notably associated with hypertension.

Conclusions:

  • Heteroplasmic mtSNVs accumulate with age and are associated with hypertension.
  • These findings suggest a potential role for heteroplasmic mtSNVs in the pathophysiology of hypertension.
  • Further research is warranted to elucidate the precise mechanisms by which heteroplasmic mtSNVs contribute to cardiovascular disease.

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