4.7 Article

Mitochondrial tRNAGlu A14693G variant may modulate the phenotypic manifestation of deafness-associated 12S rRNA A1555G mutation in a Han Chinese family

期刊

JOURNAL OF GENETICS AND GENOMICS
卷 36, 期 4, 页码 241-250

出版社

SCIENCE PRESS
DOI: 10.1016/S1673-8527(08)60111-3

关键词

hearing loss; mitochondrial DNA; mutation; modifier; 12S rRNA; tRNA; Chinese family

资金

  1. National Institute on Deafness and Other Communication Disorders [RO1DC05230, RO1DC07696]
  2. National Basic Research Priorities Program of China [2004CCA02200]
  3. Ministry of Science and Technology of Zhejiang Province [2007G50G2090026]
  4. Zhejiang Provincial Program for the Cultivation of High-level Innovative Health talents

向作者/读者索取更多资源

Mutations in mitochondrial 12S rRNA gene are one of the most important causes of aminoglycoside-induced and nonsyndromic hearing loss. Here we report the characterization of one Han Chinese pedigree with aminoglycoside-induced and nonsyndromic hearing loss. This Chinese family carrying the 12S rRNA A1555G mutation exhibited high penetrance and expressivity of hearing impairment. In particular, penetrances of hearing loss in this family pedigree were 43.8% and 25%, respectively, when aminoglycoside-induced hearing loss was included or excluded. Mutational analysis of entire mitochondrial genomes in this family showed the homoplasmic A1555G mutation and a set of variants belonging to haplogroup Y2. Of these, the A14693G variant occurred at the extremely conserved nucleotide (conventional position 54) of the T Psi C-loop of tRNA(Glu) and was absent in 156 Chinese controls. Nucleotides at position 54 of tRNAs are often modified, thereby contributing to the structural formation and stabilization of functional tRNAs. Thus, the structural alteration of LRNA by the A14693G variant may lead to a failure in tRNA metabolism and impair mitochondrial protein synthesis, thereby worsening mitochondrial dysfunctions altered by the A1555G mutation. Therefore, the tRNA(Glu) A14693G variant may have a potential modifier role in increasing the penetrance and expressivity of the deafness-associated A1555G mutation in this Chinese pedigree.

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