MSH2-MSH3 promotes DNA end resection during HR and blocks TMEJ through interaction with SMARCAD1 and EXO1
Oh, J.-M.; Kang, Y.; Park, J.; Sung, Y.; Seo, Y.; Lee, E. A.; Ra, J. S.; Amarsanaa, E.; Park, Y.-U.; Kim, H.; Scharer, O.; Cho, S. W.; Lee, C.; Takata, K.-i.; Lee, J. Y.; Myung, K.
Show abstract
DNA double strand break (DSB) repair by Homologous recombination (HR) is initiated by the end resection, a process during which 3 ssDNA overhangs are generated by the nucleolytic degradation. The extent of DNA end resection determines the choice of the DSB repair pathway. The role of several proteins including nucleases for end resection has been studied in detail. However, it is still unclear how the initial, nicked DNA generated by MRE11-RAD50-NBS1 is recognized and how subsequent proteins including EXO1 are recruited to DSB sites to facilitate extensive end resection. We found that the MutS{beta} (MSH2-MSH3) mismatch repair (MMR) complex is recruited to DSB sites by recognizing the initial nicked DNA at DSB sites through the interaction with the chromatin remodeling protein SMARCAD1. MSH2-MSH3 at DSB sites helps to recruit EXO1 for long-range resection and enhances its enzymatic activity. MSH2-MSH3 furthermore inhibits the access of DNA polymerase {theta} (POLQ), which promotes polymerase theta-mediated end-joining (TMEJ) of DSB. Collectively, our data show a direct role for MSH2-MSH3 in the initial stages of DSB repair by promoting end resection and influencing DSB repair pathway by favoring HR over TMEJ. Our findings extend the importance of MMR in DSB repair beyond established role in rejecting the invasion of sequences not perfectly homologous to template DNA during late-stage HR.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Systematic analysis of the molecular and biophysical properties of key DNA damage response factors 97%
- Role of BRCA2 DNA-binding and C-terminal domain on its mobility and conformation in DNA repair 97%
- Protection of nascent DNA at stalled replication forks is mediated by phosphorylation of RIF1 intrinsically disordered region 96%
Similar papers in this journal
- Multifaceted roles of H2B mono-ubiquitylation in D-loop metabolism during homologous recombination repair 97%
- Distinct mechanisms underlying extrachromosomal telomere DNA generation in ALT cancers 97%
- Tetrameric INTS6-SOSS1 complex facilitates DNA:RNA hybrid autoregulation at double-strand breaks 97%
Similar papers in this journal
Similar papers in this journal
- A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair 97%
- SDE2 Integrates into the TIMELESS-TIPIN Complex to Protect Stalled Replication Forks 96%
- PCNA ubiquitination protects stalled replication forks from DNA2-mediated degradation by regulating Okazaki fragment maturation and chromatin assembly 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.