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Novel nucleotide changes in mutational analysis of mitochondrial 12SrRNA gene in patients with nonsyndromic and aminoglycoside-induced hearing loss
Authors:Mohammad Ali Dowlati  Pupak Derakhshandeh-peykar  Massoud Houshmand  Mohammad Farhadi  Azadeh Shojaei  Masoomeh Fallah  Esmaiil Mohammadi  Ardavan Tajdini  Shima Arastoo  Javad Tavakkoly-Bazzaz
Institution:1. Department of Medical Genetics, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran
2. National Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, Iran
3. Department and Research Centre of ENT and Head and Neck Surgery, Tehran University of Medical Sciences, Tehran, Iran
4. Azad University, Science and Research Campus, Tehran, Iran
5. Department of ENT, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran
Abstract:Mitochondria have essential role in cellular energy metabolism and defects in their function lead to many metabolic diseases. Mitochondrial DNA (mtDNA) mutations have been associated with number diseases such as nonsyndromic and aminoglycoside-induced hearing loss. Mutational screening of entire 12SrRNA and tRNA ser (UCN) genes in 107 unrelated Iranian patients with amino glycoside-induced and nonsyndromic bilateral hearing loss by direct sequencing analysis method were performed. Twenty different homoplasmic sequence variants were identified; including fifteen common polymorphisms, two putatively pathogenic variants: m.921T>C and m.1005T>C, one 12SrRNA sequence variant m.739C>T and two nucleotides substitution; m.1245T>C and m.1545T>C. Deafness-associated mutation, m.1555A>G, was not found. In our patients we found the mutation 1005 was associated with R haplogroup. These finding show that m.1555A>G mutation is not important in our population. Nucleotide change, m.739C>T, previously reported with very low frequency. We suggested the variation of two nucleotides 1245 and 1545 that localized at conserved site of 12SrRNA may be new candidate for amino glycoside-induced and nonsyndromic hearing impairment associated mutations. However, aminoglycoside exposure is a risk factor for clinical phenotype appearance of these mutations.
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