Comprehensive next-generation sequence analyses of the entire mitochondrial genome reveal new insights into the molecular diagnosis of mitochondrial DNA disorders

异质性 线粒体DNA 大规模并行测序 桑格测序 放大器 生物 粒线体疾病 遗传学 基因组 人类线粒体遗传学 DNA测序 计算生物学 DNA 基因 聚合酶链反应
作者
Hong Cui,Fangyuan Li,David Chen,Guoli Wang,Cavatina K. Truong,Gregory M. Enns,Brett H. Graham,Margherita Milone,Megan Landsverk,Jing Wang,Wei Zhang,Lee Jun Wong
出处
期刊:Genetics in Medicine [Springer Nature]
卷期号:15 (5): 388-394 被引量:104
标识
DOI:10.1038/gim.2012.144
摘要

The application of massively parallel sequencing technology to the analysis of the mitochondrial genome has demonstrated great improvement in the molecular diagnosis of mitochondrial DNA-related disorders. The objective of this study was to investigate the performance characteristics and to gain new insights into the analysis of the mitochondrial genome.The entire mitochondrial genome was analyzed as a single amplicon using a long-range PCR-based enrichment approach coupled with massively parallel sequencing. The interference of the nuclear mitochondrial DNA homologs was distinguished from the actual mitochondrial DNA sequences by comparison with the results obtained from conventional PCR-based Sanger sequencing using multiple pairs of primers.Our results demonstrated the uniform coverage of the entire mitochondrial genome. Massively parallel sequencing of the single amplicon revealed the presence of single-nucleotide polymorphisms and nuclear homologs of mtDNA sequences that cause the erroneous and inaccurate variant calls when PCR/Sanger sequencing approach was used. This single amplicon massively parallel sequencing strategy provides an accurate quantification of mutation heteroplasmy as well as the detection and mapping of mitochondrial DNA deletions.The ability to quantitatively and qualitatively evaluate every single base of the entire mitochondrial genome is indispensible to the accurate molecular diagnosis and genetic counseling of mitochondrial DNA-related disorders. This new approach may be considered as first-line testing for comprehensive analysis of the mitochondrial genome.Genet Med 2013:15(5):388-394.
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