首页> 外文期刊>American journal of medical genetics, Part A >Variants in mitochondrial tRNAGlu, tRNAArg, and tRNAThr may influence the phenotypic manifestation of deafness-associated 12S rRNA A1555G mutation in three Han Chinese families with hearing loss.
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Variants in mitochondrial tRNAGlu, tRNAArg, and tRNAThr may influence the phenotypic manifestation of deafness-associated 12S rRNA A1555G mutation in three Han Chinese families with hearing loss.

机译:线粒体tRNAGlu,tRNAArg和tRNAThr的变异可能影响与耳聋相关的三个汉族家庭与耳聋相关的12S rRNA A1555G突变的表型表现。

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We report here on the clinical, genetic, and molecular characterization of three Han Chinese pedigrees with aminoglycoside-induced and nonsyndromic hearing loss. Clinical evaluation revealed the variable phenotype of hearing loss including severity, age-at-onset, audiometric configuration in these subjects. Penetrances of hearing loss in BJ107, BJ108, and BJ109 pedigrees are 35%, 63%, and 67%, respectively. Mutational analysis of the complete mitochondrial genomes in these pedigrees showed the identical homoplasmic A1555G mutation and distinct sets of mitochondrial DNA (mtDNA) variants belonging to haplogroups N, F, and M, respectively. Of these variants, the A14693G mutation in the tRNA(Glu), the T15908C mutation in the tRNA(Thr), and the T10454C mutation in the tRNA(Arg) are of special interest as these mutations occur at positions which are highly evolutionarily conserved nucleotides of corresponding tRNAs. These homoplasmic mtDNA mutations were absent among 156 unrelated Chinese controls. The A14693G and T10454C mutations occur at the highly conserved bases of the TpsiC-loop of tRNA(Glu) and tRNA(Arg), respectively. Furthermore, the T15908C mutation in the tRNA(Thr) disrupts a highly conserved A-U base-pairing at the D-stem of this tRNA. The alteration of structure of these tRNAs by these mtDNA mutations may lead to a failure in tRNA metabolism, thereby causing impairment of mitochondrial translation. Thus, mitochondrial dysfunctions, caused by the A1555G mutation, would be worsened by these mtDNA mutations. Therefore, these mtDNA mutations may have a potential modifier role in increasing the penetrance and expressivity of the deafness-associated 12S rRNA A1555G mutation in those Chinese pedigrees.
机译:我们在这里报告了三个汉族谱系与氨基糖苷类引起的非综合征性听力损失的临床,遗传和分子特征。临床评估显示这些受试者的听力损失的可变表型包括严重程度,发病年龄,听力测定配置。 BJ107,BJ108和BJ109谱系的听力损失渗透率分别为35%,63%和67%。这些谱系中完整的线粒体基因组的突变分析显示相同的同质A1555G突变和分别属于单倍型N,F和M的线粒体DNA(mtDNA)变体的不同集合。在这些变体中,特别感兴趣的是tRNA(Glu)中的A14693G突变,tRNA(Thr)中的T15908C突变和tRNA(Arg)中的T10454C突变,因为这些突变发生在高度进化保守的核苷酸上相应的tRNA。在156个不相关的中国对照人群中不存在这些同质性mtDNA突变。 A14693G和T10454C突变分别发生在tRNA(Glu)和tRNA(Arg)的TpsiC环的高度保守碱基处。此外,tRNA(Thr)中的T15908C突变破坏了该tRNA D-茎上高度保守的A-U碱基配对。这些mtDNA突变会改变这些tRNA的结构,可能导致tRNA代谢失败,从而导致线粒体翻译受损。因此,这些mtDNA突变会加剧由A1555G突变引起的线粒体功能障碍。因此,这些mtDNA突变可能在那些中国谱系中增加与耳聋相关的12S rRNA A1555G突变的渗透性和表达能力方面具有潜在的修饰作用。

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