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Molecular dysfunction associated with the human mitochondrial 3302A>G mutation in the MTTL1 (mt-tRNALeu(UUR)) gene

机译:与MTTL1(mt-tRNALeu(UUR))基因中人类线粒体3302A> G突变相关的分子功能障碍

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摘要

The gene encoding mt-tRNALeu(UUR), MT-TL1, is a hotspot for pathogenic mtDNA mutations. Amongst the first to be described was the 3302A>G transition which resulted in a substantial accumulation in patient muscle of RNA19, an unprocessed RNA intermediate including mt-16S rRNA, mt-tRNALeu(UUR) and MTND1. We have now been able to further assess the molecular aetiology associated with 3302A>G in transmitochondrial cybrids. Increased steady-state levels of RNA19 was confirmed, although not to the levels previously reported in muscle. This data was consistent with an increase in RNA19 stability. The mutation resulted in decreased mt-tRNALeu(UUR) levels, but its stability was unchanged, consistent with a defect in RNA19 processing responsible for low tRNA levels. A partial defect in aminoacylation was also identified, potentially caused by an alteration in tRNA structure. These deficiencies lead to a severe defect in respiration in the transmitochondrial cybrids, consistent with the profound mitochondrial disorder originally associated with this mutation.
机译:编码mt-tRNALeu(UUR)的基因MT-TL1是致病性mtDNA突变的热点。首先要描述的是3302A> G过渡,该过渡导致患者肌肉中大量积累RNA19,RNA19是未经加工的RNA中间体,包括mt-16S rRNA,mt-tRNALeu(UUR)和MTND1。现在,我们已经能够进一步评估与线粒体杂种中的3302A> G相关的分子病因。证实了RNA19的稳态水平增加,尽管没有达到以前肌肉中报道的水平。该数据与RNA19稳定性的增加是一致的。该突变导致mt-tRNALeu(UUR)水平降低,但其稳定性未改变,这与导致低tRNA水平的RNA19加工缺陷一致。还鉴定出氨基酰化的部分缺陷,可能是由于tRNA结构的改变引起的。这些缺陷导致线粒体cybrids的呼吸系统严重缺陷,与最初与此突变相关的严重线粒体疾病相一致。

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