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A new mechanism for mtDNA pathogenesis: impairment of post-transcriptional maturation leads to severe depletion of mitochondrial tRNASer(UCN) caused by T7512C and G7497A point mutations

机译:mtDNA发病机制的新机制:转录后成熟的损害导致线粒体tRNASer(UCN)的严重耗竭,这是由T7512C和G7497A点突变引起的

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摘要

We have studied the consequences of two homoplasmic, pathogenic point mutations (T7512C and G7497A) in the tRNASer(UCN) gene of mitochondrial (mt) DNA using osteosarcoma cybrids. We identified a severe reduction of tRNASer(UCN) to levels below 10% of controls for both mutations, resulting in a 40% reduction in mitochondrial protein synthesis rate and in a respiratory chain deficiency resembling that in the patients muscle. Aminoacylation was apparently unaffected. On non-denaturating northern blots we detected an altered electrophoretic mobility for G7497A containing tRNA molecules suggesting a structural impact of this mutation, which was confirmed by structural probing. By comparing in vitro transcribed molecules with native RNA in such gels, we also identified tRNASer(UCN) being present in two isoforms in vivo, probably corresponding to the nascent, unmodified transcripts co-migrating with the in vitro transcripts and a second, faster moving isoform corresponding to the mature tRNA. In cybrids containing either mutations the unmodified isoforms were severely reduced. We hypothesize that both mutations lead to an impairment of post-transcriptional modification processes, ultimately leading to a preponderance of degradation by nucleases over maturation by modifying enzymes, resulting in severely reduced tRNASer(UCN) steady state levels. We infer that an increased degradation rate, caused by disturbance of tRNA maturation and, in the case of the G7497A mutant, alteration of tRNA structure, is a new pathogenic mechanism of mt tRNA point mutations.
机译:我们已经研究了使用骨肉瘤混合细胞的线粒体(mt)DNA的tRNASer(UCN)基因中两个同质,致病性点突变(T7512C和G7497A)的后果。我们发现两种突变的tRNASer(UCN)均严重降低至对照水平的10%以下,导致线粒体蛋白合成率降低40%,并且呼吸链缺陷与患者肌肉类似。氨基酰化作用显然不受影响。在非变性Northern印迹上,我们检测到含有G7497A的tRNA分子的电泳迁移率发生改变,表明该突变的结构影响,这已通过结构探测得以证实。通过将体外转录的分子与此类凝胶中的天然RNA进行比较,我们还鉴定到tRNASer(UCN)存在于体内的两种同工型中,可能对应于与体外转录本共同迁移的新生,未修饰的转录本,以及第二种更快移动的对应于成熟tRNA的同工型。在含有两种突变的杂种中,未修饰的同工型都被严重还原。我们假设这两种突变均导致转录后修饰过程的受损,最终导致核酸酶降解优于修饰酶成熟,从而导致tRNASer(UCN)稳态水平大大降低。我们推断,由tRNA成熟的干扰引起的降解率提高,并且在G7497A突变体的情况下,tRNA结构的改变是mt tRNA点突变的新发病机制。

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