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Mitochondrial genome variant m.3250T>C as a possible risk factor for mitochondrial cardiomyopathy

  • Teresa Campbell
  • , Xiaoting Lou
  • , Jesse Slone
  • , Jenice Brown
  • , Meghan Bromwell
  • , Jie Liu
  • , Renkui Bai
  • , Katrina Haude
  • , Amanda Balog
  • , Hong Cui
  • , Weiwei Zou
  • , Li Yang
  • , Ali Al-Beshri
  • , Taosheng Huang
  • Cincinnati Children's Hospital Medical Center
  • University of Cincinnati
  • SUNY Buffalo
  • Wenzhou Medical University
  • OPKO Health, Inc.
  • Anhui Medical University
  • Central South University
  • University of Alabama at Birmingham

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

The MT-TL1 gene codes for the mitochondrial leucine transfer RNA (tRNALeu(UUR)) necessary for mitochondrial translation. Pathogenic variants in the MT-TL1 gene result in mitochondriopathy in humans. The m.3250T>C variant in the MT-TL1 gene has been previously associated with exercise intolerance and mitochondrial myopathy, yet disease classification for this variant has not been consistently reported. Molecular studies suggest the m.3250T>C variant does not alter tRNALeu(UUR) structure but may have a modest impact on aminoacylation capacity. However, functional studies are limited. Our study aimed to further define the clinical presentation, inheritance pattern, and molecular pathology of the m.3250T>C variant. Families with the m.3250T>C variant were recruited from the Mitochondrial Disease Clinic at Cincinnati Children's Hospital Medical Center and GeneDx laboratory database. Affected individuals most frequently presented with cardiac findings, exercise intolerance, and muscle weakness. Hypertrophic cardiomyopathy was the most frequent cardiac finding. Many asymptomatic individuals had homoplasmic or near homoplasmic levels of the m.3250T>C variant, suggesting the penetrance is incomplete. Patient-derived fibroblasts demonstrated lowered ATP production and increased levels of reactive oxygen species. Our results demonstrate that the m.3250T>C variant exhibits incomplete penetrance and may be a possible cause of cardiomyopathy by impacting cellular respiration in mitochondria.

Original languageEnglish
Pages (from-to)177-188
Number of pages12
JournalHuman Mutation
Volume42
Issue number2
DOIs
StatePublished - Feb 2021

Keywords

  • hypertrophic cardiomyopathy
  • incomplete penetrance
  • mitochondriopathy
  • myocardial disease
  • sex-biased

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