Abstract
Chromosomal translocations require formation and joining of DNA double strand breaks (DSBs). These events disrupt the integrity of the genome and are involved in producing leukemias, lymphomas and sarcomas. Translocations are frequent, clonal and recurrent in mature B cell lymphomas, which bear a particularly high DNA damage burden by virtue of activation-induced cytidine deaminase (AID) expression. Despite the ubiquity of genomic rearrangements, the forces that underlie their genesis are not well understood. Here, we provide a detailed description of a new method for studying these events, translocation capture sequencing (TC-Seq). TC-Seq provides the means to document chromosomal rearrangements genome-wide in primary cells, and to discover recombination hotspots. Demonstrating its effectiveness, we successfully estimate the frequency of c-myc/IgH translocations in primary B cells, and identify hotspots of AID-mediated recombination. Furthermore, TC-Seq can be adapted to generate genome-wide rearrangement maps in any cell type and under any condition.
MeSH Terms
Animals
B-Lymphocytes/metabolism
Chromosome Mapping/methods
Cytidine Deaminase/genetics,metabolism
DNA Breaks, Double-Stranded
DNA Damage/genetics
Genes, myc
Genome-Wide Association Study/methods
Immunoglobulin Heavy Chains/genetics
Lymphoma, B-Cell/genetics,metabolism
Mice
Sequence Analysis, DNA/methods
Translocation, Genetic
Chemicals
Immunoglobulin Heavy Chains
Cytidine Deaminase
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Oliveira Thiago Y
Laboratory of Molecular Immunology, The Rockefeller University, New York, NY 10065, USA.
Resch Wolfgang
Jankovic Mila
Casellas Rafael
Nussenzweig Michel C
Klein Isaac A
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