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Single-cell A3243G mitochondrial DNA mutation load assays for segregation analysis

  • Larsson Chatarina
  • , Roshan S Jahangir Tafrechi
  • , George M C Janssen
  • , Anton K Raap
  • , Wilhelm C R Sloos
  • , Frans M van de Rijke
  • , Marchien van de Sande
  • , Amin Allalou
  • , Amin Allalou
  • , Carolina Wählby
  • , Carolina Wählby

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    Segregation of mitochondrial DNA (mtDNA) is an important underlying pathogenic factor in mtDNA mutation accumulation in mitochondrial diseases and aging, but the molecular mechanisms of mtDNA segregation are elusive. Lack of high-throughput single-cell mutation load assays lies at the root of the paucity of studies in which, at the single-cell level, mitotic mtDNA segregation patterns have been analyzed. Here we describe development of a novel fluorescence-based, non-gel PCR restriction fragment length polymorphism method for single-cell A3243G mtDNA mutation load measurement. Results correlated very well with a quantitative in situ Padlock/rolling circle amplification-based genotyping method. In view of the throughput and accuracy of both methods for single-cell A3243G mtDNA mutation load determination, we conclude that they are well suited for segregation analysis
    Original languageEnglish
    Pages (from-to)1159-1166
    Number of pages8
    JournalJournal of Histochemistry and Cytochemistry
    Volume55
    Issue number11
    DOIs
    Publication statusPublished - 2007

    Keywords

    • Cell Separation
    • Cells
    • Cultured
    • DNA
    • Mitochondrial/*genetics
    • Genotype
    • Humans
    • Image Processing
    • Computer-Assisted
    • Microscopy
    • Fluorescence
    • Mutation
    • Polymerase Chain Reaction/methods
    • Polymorphism
    • Restriction Fragment Length
    • Transition Temperature

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