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首页> 外文期刊>European journal of human genetics: EJHG >Importance of searching for associated mitochondrial DNA alterations in patients with multiple deletions.
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Importance of searching for associated mitochondrial DNA alterations in patients with multiple deletions.

机译:在具有多个缺失的患者中寻找相关的线粒体DNA改变的重要性。

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Multiple mitochondrial DNA (mtDNA) deletions have been reported in patients with autosomal dominant and recessive disorders. We studied several affected and one non-affected individuals belonging to a pedigree in which the inheritance of the pathological trait was compatible with an autosomique dominant transmission. Affected members had late-onset multisystem disorders with multiple mtDNA deletions in skeletal muscle. But this family presented a striking difference from previously described cases, because none of the patients had progressive external ophthalmoplegia (PEO). We also studied one young boy with a no contributary family history. He had a cerebellar ataxia with PEO and multiple mtDNA deletions in muscle. Molecular analysis revealed that in the first family, repeated sequences were present at the breakpoint junctions, whereas such motifs were not found in the young patient's case. In the first family, we evidenced mtDNA point mutations in clones containing breakpoint junctions and a 9-bp motif triplication in the intergenic COII/tRNA(Lys) region, whereas this sequence is repeated twice in the wild type mtDNA. Our results suggest that multiple deletions observed in the two pedigrees result from different molecular mechanisms and point out the role of repeated sequences in the first pedigree. No mtDNA repair system has been described in mammals so far, but the molecular abnormalities found in the first family suggest that a defect in an mtDNA repair system, homologous to the E. coli MutHLS pathway, could be responsible for such a phenotype.
机译:在常染色体显性遗传和隐性遗传疾病患者中已报道了多个线粒体DNA(mtDNA)缺失。我们研究了属于一个系谱的几个受影响和一个不受影响的个体,其中病理特征的遗传与自体显性遗传相容。受影响的成员患有迟发性多系统疾病,骨骼肌中存在多个mtDNA缺失。但是这个家庭与先前描述的病例相比有显着差异,因为没有一个患者进行性外眼肌麻痹(PEO)。我们还研究了一个没有家族史的小男孩。他患有小脑性共济失调,PEO和肌肉中多个mtDNA缺失。分子分析显示,在第一个家族中,在断点连接处存在重复序列,而在年轻患者的病例中未发现此类基序。在第一个家族中,我们证明了在基因间COII / tRNA(Lys)区中包含断点连接和9-bp基元重复的克隆中存在mtDNA点突变,而该序列在野生型mtDNA中重复了两次。我们的结果表明,两个谱系中观察到的多个缺失是由于分子机制不同而引起的,并指出了重复序列在第一个谱系中的作用。到目前为止,尚未在哺乳动物中描述过mtDNA修复系统,但是在第一个家族中发现的分子异常表明与大肠杆菌MutHLS途径同源的mtDNA修复系统缺陷可能是这种表型的原因。

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