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一种用于在患者样本库中筛选致病变异的新型扩增阻滞突变系统-聚合酶链反应策略。

A Novel Amplification-Refractory Mutation System-PCR Strategy to Screen Pathogenic Variants in Patient Repositories.

作者信息

Bulduk Bengisu Kevser, Kiliç Hasan Basri, Bekircan-Kurt Can Ebru, Haliloğlu Göknur, Erdem Özdamar Sevim, Topaloğlu Haluk, Kocaefe Y Çetin

机构信息

Department of Medical Biology, Hacettepe University School of Medicine, Ankara, Turkey.

Department of Neurology, Hacettepe University School of Medicine, Ankara, Turkey.

出版信息

Genet Test Mol Biomarkers. 2020 Mar;24(3):165-170. doi: 10.1089/gtmb.2019.0079.

Abstract

Pathogenic variants within mitochondrial tRNA and rRNA genes negatively affect protein synthesis function and cause oxidative phosphorylation defects. The majority of mitochondrial cytopathies are caused by pathogenic point variants within the mitochondrial tRNA gene for leucine (). This study was designed to evaluate a novel amplification-refractory mutation system (ARMS)-PCR based assay to screen patient samples with a clinical diagnosis of mitochondrial cytopathies. Tissue DNA samples from 219 affected individuals were screened for the pathogenic variants m.3271T>C, m.3291Ty >C, m.3303C>T, m.3256C>T, and m.3260A>G along with the most frequent m.3243A>G mutation in the gene. The assay included a "High Resolution Melt curve analysis" to enhance detection limits. The precision of the assay was verified using synthetic controls with variant heteroplasmy ratios. The screening identified the second reported m.3303C>T case as well as two patients with m.3243A>G variants and a rare variant exhibiting m.3290T>C. ARMS-PCR is superior to Sanger sequencing for the detection of variations exhibiting low heteroplasmy. These results provide "proof of concepts" for the implementation of this application for future screening of rare mtDNA variations in sample repositories.

摘要

线粒体tRNA和rRNA基因中的致病性变异会对蛋白质合成功能产生负面影响,并导致氧化磷酸化缺陷。大多数线粒体细胞病是由线粒体亮氨酸tRNA基因中的致病性点变异引起的。本研究旨在评估一种基于新型扩增阻滞突变系统(ARMS)-PCR的检测方法,以筛查临床诊断为线粒体细胞病的患者样本。对219名受影响个体的组织DNA样本进行筛查,检测致病性变异m.3271T>C、m.3291Ty>C、m.3303C>T、m.3256C>T和m.3260A>G,以及该基因中最常见的m.3243A>G突变。该检测方法包括“高分辨率熔解曲线分析”以提高检测限。使用具有变异异质性比率的合成对照验证了该检测方法的准确性。筛查发现了第二例报道的m.3303C>T病例,以及两名携带m.3243A>G变异的患者和一例罕见的m.3290T>C变异。对于检测低异质性变异,ARMS-PCR优于桑格测序。这些结果为在样本库中实施该应用以未来筛查罕见线粒体DNA变异提供了“概念验证”。

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