Interference of mismatch and base excision repair during the processing of adjacent U/G mispairs may play a key role in somatic hypermutation
- 7 April 2009
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (14) , 5593-5598
- https://doi.org/10.1073/pnas.0901726106
Abstract
In eukaryotic mismatch repair (MMR), degradation of the error-containing strand initiates at nicks or gaps that can be up to a kilobase away from the mispair. These discontinuities may be the ends of Okazaki fragments or the 3′-termini of the leading strands during replication, whereas the termini of invading strands may fulfill this role during recombination. Here we show that, in extracts of human cells, MMR can initiate also at sites of ongoing base excision repair. Although unlikely under normal circumstances, this situation may arise in vivo during somatic hypermutation (SHM) and class switch recombination of Ig genes, where activation-induced cytidine deaminase (AID) generates multiple U/G mismatches in the variable or switch regions. Uracil should normally be excised by base excision repair (BER), but we show here that MMR proteins activated by a nearby mismatch interfere with uracil processing to generate long single-stranded gaps. We postulate that, in a subset of the repair events, filling-in of the MMR-generated gaps might be catalyzed by the error-prone polymerase-η, rather than by the high-fidelity polymerase-δ. Because polymerase-η has a propensity to misinsertions opposite adenine residues, the above mechanism would help explain why SHM affects not only C/G, but also A/T base pairs.Keywords
This publication has 28 references indexed in Scilit:
- Hypermutation at A/T Sites during G·U Mismatch Repair in Vitro by Human B-cell LysatesPublished by Elsevier ,2008
- Down-regulation of DNA polymerase β accompanies somatic hypermutation in human BL2 cell linesDNA Repair, 2006
- A Role for PCNA Ubiquitination in Immunoglobulin HypermutationPLoS Biology, 2006
- Mechanisms in Eukaryotic Mismatch RepairJournal of Biological Chemistry, 2006
- The multifaceted mismatch-repair systemNature Reviews Molecular Cell Biology, 2006
- AID in somatic hypermutation and class switch recombinationCurrent Opinion in Immunology, 2006
- Targeting of the Activation-Induced Cytosine Deaminase Is Strongly Influenced by the Sequence and Structure of the Targeted DNAMolecular and Cellular Biology, 2005
- AID to overcome the limitations of genomic informationNature Immunology, 2005
- AID binds to transcription-induced structures in c-MYC that map to regions associated with translocation and hypermutationOncogene, 2005
- Somatic Hypermutation of Immunoglobulin Genes Is Linked to Transcription InitiationImmunity, 1996