DNA Polymerase beta Accelerates Cellular DNA Base Excision Repair by Suppressing Excessive PARP1 Engagement
Demin, A.; Adamowicz, M.; Brazina, J.; Gautam, A.; Caldecott, K. W.
Show abstract
DNA polymerase beta (POL{beta}) is required for rapid rates of cellular DNA base excision repair (BER). However, the reason for this requirement is unclear, because other DNA polymerases can replace POL{beta}, in vitro. Here, we have identified the essential role of POL{beta} during cellular BER. As expected, POL{beta} deletion in human RPE-1 cells resulted in the rapid accumulation of DNA strand break intermediates during incubation with the monofunctional alkylating agent, methyl methanesulphonate (MMS). However, this accumulation was not detected in cells that also lack PARP1, indicating that POL{beta} is required for BER only if PARP1 is present. This result is reminiscent of the essential role of XRCC1 during BER, which is to suppress the excessive engagement and activity of PARP1 at BER intermediates and thereby enable their access and repair by other enzymes. Indeed, we found that POL{beta} is required to prevent excessive PARP1 engagement and activity during BER, and that XRCC1 and POL{beta} fulfil this function together. Finally, similar to XRCC1, loss of POL{beta} leads to persistent transcriptional suppression during MMS-induced BER, and this suppression is alleviated by treatment with PARP inhibitor. In summary, we show here that the essential role of POL{beta} during cellular BER is to suppress excessive PARP1 engagement and activity, and thereby maintain rapid rates of this important DNA repair process.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- XRCC1 mediates PARP1- and PAR-dependent recruitment of PARP2 to DNA damage sites 96%
- Site-specific acetylation of polynucleotide kinase 3-phosphatase (PNKP) regulates its distinct role in DNA repair pathways 95%
- Phosphorylation Status Of MUS81 Is A Modifier Of Olaparib Sensitivity In BRCA2-Deficient Cells 95%
Similar papers in this journal
Similar papers in this journal
- A DNA repair-independent role for alkyladenine DNA glycosylase in alkylation-induced unfolded protein response 95%
- Asymmetrical recognition and processing of double-strand breaks formed during DNA replication 93%
- Revised Mechanism of Hydroxyurea Induced Cell Cycle Arrest and an Improved Alternative 93%
Similar papers in this journal
- Treatment of human cells with 5-aza-dC induces formation of PARP1-DNA covalent adducts at genomic regions targeted by DNMT1 93%
- Multifunctional properties of Nej1XLF C-terminus promote end-joining and impact DNA double-strand break repair pathway choice 92%
- C17orf53 defines a novel pathway involved in inter-strand crosslink repair 92%
Similar papers in this journal
"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.