Dino Ferrari Centre, Department of Neurological Sciences, University of Milan, IRCCS Foundation Ca' Granda Ospedale Maggiore Policlinico, Milan, Italy.
Eur J Hum Genet. 2012 Mar;20(3):357-60. doi: 10.1038/ejhg.2011.238. Epub 2011 Dec 21.
Although mutations in mitochondrial tRNAs constitute the most common mtDNA defect, the presence of pathological variants in mitochondrial tRNA(Asn) is extremely rare. We were able to identify a novel mtDNA tRNA(Asn) gene pathogenic mutation associated with a myopathic phenotype and a previously unreported respiratory impairment. Our proband is an adult woman with ophthalmoparesis and respiratory impairment. Her muscle biopsy presented several cytochrome c oxidase-negative (COX-) fibres and signs of mitochondrial proliferation (ragged red fibres). Sequence analysis of the muscle-derived mtDNA revealed an m.5709T>C substitution, affecting mitochondrial tRNA(Asn) gene. Restriction-fragment length polymorphism analysis of the mutation in isolated muscle fibres showed that a threshold of at least 91.9% mutated mtDNA results in the COX deficiency phenotype. The new phenotype further increases the clinical spectrum of mitochondrial diseases caused by mutations in the tRNA(Asn) gene.
虽然线粒体 tRNA 的突变构成了最常见的 mtDNA 缺陷,但线粒体 tRNA(Asn)中存在病理性变体的情况极为罕见。我们能够鉴定出一种与肌病表型相关的新型 mtDNA tRNA(Asn)基因致病性突变,以及以前未报道过的呼吸功能障碍。我们的先证者是一名成年女性,表现为眼肌麻痹和呼吸功能障碍。她的肌肉活检显示出数根细胞色素 c 氧化酶阴性(COX-)纤维和线粒体增生(红纤维絮状)的迹象。从肌肉中提取的 mtDNA 序列分析显示 m.5709T>C 取代,影响线粒体 tRNA(Asn)基因。对分离的肌肉纤维中突变的限制性片段长度多态性分析表明,至少 91.9%的突变 mtDNA 导致 COX 缺乏表型的阈值。这种新表型进一步增加了由 tRNA(Asn)基因突变引起的线粒体疾病的临床谱。