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Evidence for multi-copy Mega-NUMTs in the human genome
Authors:Sabine Lutz-Bonengel,Harald Niederst  tter,Jana Naue,Rafal Koziel,Fengtang Yang,Timo S  nger,Gabriela Huber,Cordula Berger,Ren   Pflugradt,Christina Strobl,Catarina Xavier,Marianne Volleth,Sandra Carina Weiß  ,Jodi A Irwin,Erica L Romsos,Peter M Vallone,Gudrun Ratzinger,Matthias Schmuth,Pidder Jansen-Dü  rr,Thomas Liehr,Peter Lichter,Thomas J Parsons,Stefan Pollak,Walther Parson
Abstract:The maternal mode of mitochondrial DNA (mtDNA) inheritance is central to human genetics. Recently, evidence for bi-parental inheritance of mtDNA was claimed for individuals of three pedigrees that suffered mitochondrial disorders. We sequenced mtDNA using both direct Sanger and Massively Parallel Sequencing in several tissues of eleven maternally related and other affiliated healthy individuals of a family pedigree and observed mixed mitotypes in eight individuals. Cells without nuclear DNA, i.e. thrombocytes and hair shafts, only showed the mitotype of haplogroup (hg) V. Skin biopsies were prepared to generate ρ° cells void of mtDNA, sequencing of which resulted in a hg U4c1 mitotype. The position of the Mega-NUMT sequence was determined by fluorescence in situ hybridization and two different quantitative PCR assays were used to determine the number of contributing mtDNA copies. Thus, evidence for the presence of repetitive, full mitogenome Mega-NUMTs matching haplogroup U4c1 in various tissues of eight maternally related individuals was provided. Multi-copy Mega-NUMTs mimic mixtures of mtDNA that cannot be experimentally avoided and thus may appear in diverse fields of mtDNA research and diagnostics. We demonstrate that hair shaft mtDNA sequencing provides a simple but reliable approach to exclude NUMTs as source of misleading results.
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