Rapid analysis of chromosome aberrations in mouse B lymphocytes by PNA-FISH

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    8 Scopus citations

    Abstract

    Defective DNA repair leads to increased genomic instability, which is the root cause of mutations that lead to tumorigenesis. Analysis of the frequency and type of chromosome aberrations in different cell types allows defects in DNA repair pathways to be elucidated. Understanding mammalian DNA repair biology has been greatly helped by the production of mice with knockouts in specific genes. The goal of this protocol is to quantify genomic instability in mouse B lymphocytes. Labeling of the telomeres using PNA-FISH probes (peptide nucleic acid - fluorescent in situ hybridization) facilitates the rapid analysis of genomic instability in metaphase chromosome spreads. B cells have specific advantages relative to fibroblasts, because they have normal ploidy and a higher mitotic index. Short-term culture of B cells therefore enables precise measurement of genomic instability in a primary cell population which is likely to have fewer secondary genetic mutations than what is typically found in transformed fibroblasts or patient cell lines.

    Original languageEnglish (US)
    Article numbere51806
    JournalJournal of Visualized Experiments
    Issue number90
    DOIs
    StatePublished - Aug 19 2014

    All Science Journal Classification (ASJC) codes

    • General Neuroscience
    • General Chemical Engineering
    • General Biochemistry, Genetics and Molecular Biology
    • General Immunology and Microbiology

    Keywords

    • DNA repair
    • FISH
    • Genomic instability
    • Immunology
    • Issue 90
    • Metaphase spread
    • Mouse
    • Primary culture

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