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首页> 外文期刊>Neuromuscular disorders: NMD >Distinct segregation of the pathogenic m.5667G>A mitochondrial tRNA(Asn) mutation in extraocular and skeletal muscle in chronic progressive external ophthalmoplegia
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Distinct segregation of the pathogenic m.5667G>A mitochondrial tRNA(Asn) mutation in extraocular and skeletal muscle in chronic progressive external ophthalmoplegia

机译:致病性M.5667g的不同偏析>慢性进展外部眼镜术中的眼外和骨骼肌中的线粒体TRNA(ASN)突变

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摘要

Chronic progressive external ophthalmoplegia (CPEO) is a frequent clinical manifestation of disorders caused by pathogenic mitochondrial DNA mutations. However, for diagnostic purposes skeletal muscle tissue is used, since extraocular muscle tissue is usually not available for work-up. In the present study we aimed to identify causative factors that are responsible for extraocular muscle to be primarily affected in CPEO. We performed comparative histochemical and molecular genetic analyses of extraocular muscle and skeletal muscle single fibers in a case of isolated CPEO caused by the heteroplasmic m.5667G>A mutation in the mitochondrial tRNA(Asn) gene (MT-TN). Histochemical analyses revealed higher proportion of cytochrome c oxidase deficient fibers in extraocular muscle (41%) compared to skeletal muscle (10%). However, genetic analyses of single fibers revealed no significant difference either in the mutation loads between extraocular muscle and skeletal muscle cytochrome c oxidase deficient single fibers (extraocular muscle 86%+/- 4.6%; skeletal muscle 87.8%+/- 5.7%, p = 0.246) nor in the mutation threshold (extraocular muscle 74%+/- 3%; skeletal muscle 74%+/- 4%). We hypothesize that higher proportion of cytochrome c oxidase deficient fibers in extraocular muscle compared to skeletal muscle might be due to facilitated segregation of the m.5667G>A mutation into extraocular muscle, which may explain the preferential ocular manifestation and clinically isolated CPEO. (C) 2019 Elsevier B.V. All rights reserved.
机译:慢性进展外部眼科(CPEO)是致病性线粒体DNA突变引起的疾病常见的临床表现。然而,对于使用骨骼肌组织的诊断目的,由于占外瓣肌肉组织通常不可用于上班。在本研究中,我们旨在识别负责视网膜主要受到CPEO影响的致病因素。在由线粒体TRNA(ASN)基因(MT-TN)中的异质M.5667G>突变引起的分离CPEO的情况下,我们对外瓣肌肉和骨骼肌单纤维进行了比较的组织化学和分子遗传分析。与骨骼肌(10%)相比,组织化学分析显示出骨骼肌中的细胞色素C氧化酶缺乏纤维的比例较高,相比(10%)。然而,单纤维的遗传分析显示出在视层肌肉和骨骼肌细胞色素C氧化酶缺陷单纤维的突​​变载荷中没有显着差异(面外插肌86%+ / - 4.6%;骨骼肌87.8%+ / - 5.7%,p = 0.246)或突变阈值(面外插肌74%+ / - 3%;骨骼肌74%+ / - 4%)。我们假设与骨骼肌相比,视网脉肌肉中的细胞色素C氧化酶缺乏纤维的较高比例可能是由于将M.5667g>突变的突变促进到视网膜中,这可以解释优先眼部表现和临床上分离的CPEO。 (c)2019年Elsevier B.V.保留所有权利。

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