DNA replication timing directly regulates the frequency of oncogenic chromosomal translocations.
basic_science · Level V
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- Record sourced from PubMed, PMID 36108018.
- Also identified by DOI 10.1126/science.abj5502.
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Abstract
Chromosomal translocations result from the joining of DNA double-strand breaks (DSBs) and frequently cause cancer. However, the steps linking DSB formation to DSB ligation remain undeciphered. We report that DNA replication timing (RT) directly regulates lymphomagenic <i>Myc</i> translocations during antibody maturation in B cells downstream of DSBs and independently of DSB frequency. Depletion of minichromosome maintenance complexes alters replication origin activity, decreases translocations, and deregulates global RT. Ablating a single origin at <i>Myc</i> causes an early-to-late RT switch, loss of translocations, and reduced proximity with the immunoglobulin heavy chain (<i>Igh</i>) gene, its major translocation partner. These phenotypes were reversed by restoring early RT. Disruption of early RT also reduced tumorigenic translocations in human leukemic cells. Thus, RT constitutes a general mechanism in translocation biogenesis linking DSB formation to DSB ligation.
Medical subject headings
- Carcinogenesis
- DNA Replication Timing
- Lymphoma, B-Cell
- Proto-Oncogene Proteins c-myc
- Translocation, Genetic