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April 5, 2010The Journal of Experimental Medicine278 citationsOpen Access

53BP1 regulates DNA resection and the choice between classical and alternative end joining during class switch recombination

ABAnne BothmerFinch Therapeutics (United States)DRDavide F. RobbianiUniversità della Svizzera italianaNFNiklas FeldhahnCentre for Inflammation Research

Key Points

  • To determine how the DNA damage response protein 53BP1 regulates intrachromosomal DNA repair and pathway choice between classical and alternative nonhomologous end joining during class switch recombination.
  • Introduced paired DNA double-strand breaks into the immunoglobulin heavy chain (IgH) locus using I-SceI endonuclease.
  • Evaluated DNA end resection levels and the frequency of microhomology-mediated alternative end joining in the presence and absence of 53BP1.
  • Loss of 53BP1 led to an ataxia telangiectasia mutated (ATM)-dependent increase in DNA end resection at switch regions.
  • Resected DNA ends were preferentially rejoined via microhomology-mediated alternative nonhomologous end joining (A-NHEJ).
  • 53BP1 shielded DNA ends from resection, thereby preventing premature short-range intra-switch rejoining and enabling long-range class switch recombination.

Abstract

Class switch recombination (CSR) diversifies antibodies by joining highly repetitive DNA elements, which are separated by 60-200 kbp. CSR is initiated by activation-induced cytidine deaminase, an enzyme that produces multiple DNA double-strand breaks (DSBs) in switch regions. Switch regions are joined by a mechanism that requires an intact DNA damage response and classical or alternative nonhomologous end joining (A-NHEJ). Among the DNA damage response factors, 53BP1 has the most profound effect on CSR. We explore the role of 53BP1 in intrachromosomal DNA repair using I-SceI to introduce paired DSBs in the IgH locus. We find that the absence of 53BP1 results in an ataxia telangiectasia mutated-dependent increase in DNA end resection and that resected DNA is preferentially repaired by microhomology-mediated A-NHEJ. We propose that 53BP1 favors long-range CSR in part by protecting DNA ends against resection, which prevents A-NHEJ-dependent short-range rejoining of intra-switch region DSBs.

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Cite This Study

Bothmer et al. (2010) studied this question.

synapsesocial.com/papers/6a0cb10fe8a76b3043889986https://doi.org/10.1084/jem.20100244
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