The tRNA(Gly) T10003C mutation in mitochondrial haplogroup M11b in a Chinese family with diabetes decreases the steady-state level of tRNA(Gly), increases aberrant reactive oxygen species production, and reduces mitochondrial membrane potential

Mol Cell Biochem. 2015 Oct;408(1-2):171-9. doi: 10.1007/s11010-015-2493-0. Epub 2015 Jul 2.

Abstract

Mitochondrial diabetes originates mainly from mutations located in maternally transmitted, mitochondrial tRNA-coding genes. In a genetic screening program of type 2 diabetes conducted with a Chinese Han population, we found one family with suggestive maternally transmitted diabetes. The proband's mitochondrial genome was analyzed using DNA sequencing. Total 42 known nucleoside changes and 1 novel variant were identified, and the entire mitochondrial DNA sequence was assigned to haplogroup M11b. Phylogenetic analysis showed that a homoplasmic mutation, 10003T>C transition, occurred at the highly conserved site in the gene encoding tRNA(Gly). Using a transmitochondrial cybrid cell line harboring this mutation, we observed that the steady-state level of tRNA(Gly) significantly affected and the amount of tRNA(Gly) decreased by 97%, production of reactive oxygen species was enhanced, and mitochondrial membrane potential, mtDNA copy number and cellular oxygen consumption rate were remarkably decreased compared with wild-type cybrid cells. The homoplasmic 10003T>C mutation in the mitochondrial tRNA(Gly) gene suggested to be as a pathogenesis-related mutation which might contribute to the maternal inherited diabetes in the Han Chinese family.

Keywords: Mitochondrial diabetes; Mitochondrial membrane potential; Mitochondrial tRNA glycine; Reactive oxygen species; m.10003T>C mutation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aged
  • Asian People / ethnology
  • Asian People / genetics*
  • China / ethnology
  • Diabetes Mellitus, Type 2 / ethnology
  • Diabetes Mellitus, Type 2 / genetics*
  • Female
  • Genetic Predisposition to Disease
  • Genome, Mitochondrial
  • Haplotypes
  • Humans
  • Male
  • Membrane Potential, Mitochondrial
  • Middle Aged
  • Mitochondria / genetics*
  • Mitochondrial Diseases / genetics*
  • Mutation*
  • Oxygen Consumption
  • Pedigree
  • Phylogeny
  • RNA, Transfer, Gly / genetics*
  • Reactive Oxygen Species / metabolism

Substances

  • RNA, Transfer, Gly
  • Reactive Oxygen Species