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Detection of Deafness-Causing Mutations in the Greek Mitochondrial Genome

机译:检测希腊线粒体基因组中的失聪突变。

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摘要

Mitochondrion harbors its own DNA, known as mtDNA, encoding certain essential components of the mitochondrial respiratory chain and protein synthesis apparatus. mtDNA mutations have an impact on cellular ATP production and many of them are undoubtedly a factor that contributes to sensorineural deafness, including both syndromic and non-syndromic forms. Hot spot regions for deafness mutations are the MTRNR1 gene, encoding the 12S rRNA, the MTTS1 gene, encoding the tRNA for Ser(UCN), and the MTTL1 gene, encoding the tRNA for Leu(UUR). We investigated the impact of mtDNA mutations in the Greek hearing impaired population, by testing a cohort of 513 patients suffering from childhood onset prelingual or postlingual, bilateral, sensorineural, syndromic or non-syndromic hearing loss of any degree for six mitochondrial variants previously associated with deafness. Screening involved the MTRNR1 961delT/insC and A1555G mutations, the MTTL1 A3243G mutation, and the MTTS1 A7445G, 7472insC and T7510C mutations. Although two patients were tested positive for the A1555G mutation, we failed to identify any subject carrying the 961delT/insC, A3243G, A7445G, 7472insC, or T7510C mutations. Our findings strongly support our previously raised conclusion that mtDNA mutations are not a major risk factor for sensorineural deafness in the Greek population.
机译:线粒体具有自己的DNA,称为mtDNA,编码线粒体呼吸链和蛋白质合成装置的某些必不可少的成分。 mtDNA突变会影响细胞ATP的产生,其中许多无疑是导致感音神经性耳聋的一个因素,包括综合征和非综合征形式。失聪突变的热点区域是编码12S rRNA的MTRNR1基因,编码Ser (UCN)的tRNA的MTTS1基因和编码Leu (的tRNA)的MTTL1基因( UUR)。我们通过测试一组513名患有儿童期发作的舌前或舌后,双侧,感音神经性,症状性或非综合征性听力损失的513名患者的队列,研究了mtDNA突变对希腊听力受损人群的影响,这些患者先前与六种线粒体变异有关耳聋。筛选涉及MTRNR1 961delT / insC和A1555G突变,MTTL1 A3243G突变以及MTTS1 A7445G,7472insC和T7510C突变。尽管测试了两名患者的A1555G突变阳性,但我们未能鉴定出任何携带961delT / insC,A3243G,A7445G,7472insC或T7510C突变的受试者。我们的发现强烈支持我们先前提出的结论,即mtDNA突变不是希腊人口感音神经性耳聋的主要危险因素。

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