首页> 美国卫生研究院文献>Molecular and Cellular Biology >A disease-associated G5703A mutation in human mitochondrial DNA causes a conformational change and a marked decrease in steady-state levels of mitochondrial tRNA(Asn).
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A disease-associated G5703A mutation in human mitochondrial DNA causes a conformational change and a marked decrease in steady-state levels of mitochondrial tRNA(Asn).

机译:人类线粒体DNA中与疾病相关的G5703A突变导致构象变化和线粒体tRNA(Asn)稳态水平的显着降低。

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摘要

We introduced mitochondrial DNA (mtDNA) from a patient with a mitochondrial myopathy into established mtDNA-less human osteosarcoma cells. The resulting transmitochondrial cybrid lines, containing either exclusively wild-type or mutated (G5703A transition in the tRNA[Asn] gene) mtDNA, were characterized and analyzed for oxidative phosphorylation function and steady-state levels of different RNA species. Functional studies showed that the G5703A mutation severely impairs oxidative phosphorylation function and mitochondrial protein synthesis. We detected a marked reduction in tRNA(Asn) steady-state levels which was not associated with an accumulation of intermediate transcripts containing tRNA(Asn) sequences or decreased transcription. Native polyacrylamide gel electrophoresis showed that the residual tRNA(Asn) fraction in mutant cybrids had an altered conformation, suggesting that the mutation destabilized the tRNA(Asn) secondary or tertiary structure. Our results suggest that the G5703 mutation causes a conformational change in the tRNA(Asn) which may impair aminoacylation. This alteration leads to a severe reduction in the functional tRNA(Asn) pool by increasing its in vivo degradation by mitochondrial RNases.
机译:我们将线粒体肌病患者的线粒体DNA(mtDNA)引入已建立的无mtDNA的人骨肉瘤细胞中。鉴定并分析了仅包含野生型或突变(tRNA [Asn]基因中的G5703A过渡)mtDNA的所得线粒体杂种系,并分析了不同RNA种类的氧化磷酸化功能和稳态水平。功能研究表明,G5703A突变严重损害了氧化磷酸化功能和线粒体蛋白质的合成。我们检测到tRNA(Asn)稳态水平显着降低,这与包含tRNA(Asn)序列的中间转录物的积累或转录降低无关。天然聚丙烯酰胺凝胶电泳表明,突变的杂种中残留的tRNA(Asn)部分具有改变的构象,这表明该突变使tRNA(Asn)的二级或三级结构不稳定。我们的结果表明,G5703突变导致tRNA(Asn)发生构象变化,这可能会损害氨基酰化作用。通过增加线粒体RNase在体内的降解,这种改变导致功能性tRNA(Asn)库的严重减少。

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