Strand Harald, Ingebretsen Ole Christian, Nilssen Oivind
Department of Medical Biochemistry, University Hospital of North-Norway, 9038 Tromsø, Norway.
Clin Chim Acta. 2008 Apr;390(1-2):126-33. doi: 10.1016/j.cca.2008.01.010. Epub 2008 Jan 16.
The phenotypic expression of disorders caused by point mutations, deletions or depletions within the mitochondrial genome (mtDNA) is heterogeneous. This relates to the phenomena of heteroplasmy, tissue threshold as well as the distribution of mutant DNA among tissues. Hence, the diagnostics of these disorders demands highly specific, sensitive and quantitative methods.
We have developed an allele-specific quantitative real-time PCR method for the detection of two of the most prevalent disease causing mitochondrial mutations, m.3243A>G (MELAS) and m.8993T>G (NARP). Locked Nucleic Acid (LNA) modified primers were used to obtain high allele specificity. In order to monitor mtDNA depletion a real-time method for mtDNA/nuclear DNA copy number ratio determination was developed.
Rapid and sensitive detection and quantification of MELAS and NARP mtDNA alleles were achieved. Heteroplasmy levels as low as 0.01% could be detected, and the mtDNA/nuclear DNA ratio could be determined.
The present method that allows simultaneous determination of heteroplasmy levels and mtDNA/nuclear DNA copy number ratio, will provide a useful tool in molecular diagnostics and in future epidemiological studies of mitochondrial diseases.
由线粒体基因组(mtDNA)内的点突变、缺失或耗竭引起的疾病的表型表达具有异质性。这与异质性、组织阈值以及突变DNA在组织中的分布现象有关。因此,这些疾病的诊断需要高度特异性、灵敏性和定量的方法。
我们开发了一种等位基因特异性定量实时PCR方法,用于检测两种最常见的导致线粒体疾病的突变,即m.3243A>G(MELAS)和m.8993T>G(NARP)。使用锁核酸(LNA)修饰引物以获得高等位基因特异性。为了监测mtDNA耗竭,开发了一种用于测定mtDNA/核DNA拷贝数比的实时方法。
实现了对MELAS和NARP mtDNA等位基因的快速、灵敏检测和定量。可检测到低至0.01%的异质性水平,并可确定mtDNA/核DNA比值。
本方法可同时测定异质性水平和mtDNA/核DNA拷贝数比,将为线粒体疾病的分子诊断和未来流行病学研究提供有用工具。