Mitochondrial DNA Deletions in Progressive External Ophthalmoplegia and Kearns-Sayre Syndrome

线粒体肌病 慢性进行性外眼肌麻痹 卡恩斯-塞尔综合征 线粒体DNA 外眼肌麻痹 细胞色素c氧化酶 线粒体脑肌病 线粒体脑肌病 呼吸链 分子生物学 线粒体 辅酶Q-细胞色素c还原酶 线粒体呼吸链 生物 肌病 南方斑点 DNA 遗传学 细胞色素c 基因
作者
Carlos T. Moraes,Salvatore DiMauro,Massimo Zeviani,Anne Lombès,Sara Shanske,Armand F. Miranda,Hirofumi Nakase,Eduardo Bonilla,Lineu César Werneck,Serenella Servidei,Ikuya Nonaka,Yasutoshi Koga,Alfred J. Spiro,A. Keith W. Brownell,Beny Schmidt,Donald L. Schotland,Mary L. Zupanc,Darryl C. DeVivo,Eric A. Schon,Lewis P. Rowland
出处
期刊:The New England Journal of Medicine [Massachusetts Medical Society]
卷期号:320 (20): 1293-1299 被引量:1020
标识
DOI:10.1056/nejm198905183202001
摘要

We investigated the correlations of deletions of mitochondrial DNA in skeletal muscle with clinical manifestations of mitochondrial myopathies, a group of disorders defined either by biochemical abnormalities of mitochondria or by morphologic changes causing a ragged red appearance of the muscle fibers histochemically. We performed genomic Southern blot analysis of muscle mitochondrial DNA from 123 patients with different mitochondrial myopathies or encephalomyopathies. Deletions were found in the mitochondrial DNA of 32 patients, all of whom had progressive external ophthalmoplegia. Some patients had only ocular myopathy, whereas others had Kearns—Sayre syndrome, a multisystem disorder characterized by ophthalmoplegia, pigmentary retinopathy, heart block, and cerebellar ataxia. The deletions ranged in size from 1.3 to 7.6 kilobases and were mapped to different sites in the mitochondrial DNA, but an identical 4.9-kilobase deletion was found in the same location in 11 patients. Biochemical analysis showed decreased activities of NADH dehydrogenase, rotenone-sensitive NADH–cytochrome c reductase, succinate–cytochrome c reductase, and cytochrome c oxidase, four enzymes of the mitochondrial respiratory chain containing subunits encoded by mitochondrial DNA. We conclude that deletions of muscle mitochondrial DNA are associated with ophthalmoplegia and may result in impaired mitochondrial function. However, the precise relation between clinical and biochemical phenotypes and deletions remains to be defined. (N Engl J Med 1989; 320:1293–9.)

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