ArticleNucleic acids research2023
Novel mechanisms for the removal of strong replication-blocking HMCES- and thiazolidine-DNA adducts in humans.
Article in Nucleic acids research, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
What it found
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Who cites it
8 citing papers in PubMed, 15 citations in OpenAlex.
- Integrating bulk and single-cell transcriptome to identify novel gene markers for germinal center B cells (GCB) subtype of diffuse large B-cell lymphoma.Annals of hematology · 2025Article
- DNA-Protein Cross-Links Derived from Abasic DNA Lesions: Recent Progress and Future Directions.Chemical research in toxicology · 2025Review
- HMCES corrupts replication fork stability during base excision repair in homologous recombination-deficient cells.Science advances · 2025Article
- Repair of genomic interstrand crosslinks.DNA repair · 2024Review
- Review
- Temporary HMCES-DNA cross-link prevents permanent DNA damage.Cell reports · 2024Article
- Self-reversal facilitates the resolution of HMCES DNA-protein crosslinks in cells.Cell reports · 2023Article
- Repair and tolerance of DNA damage at the replication fork: A structural perspective.Current opinion in structural biology · 2023Review
Corrections and comments
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Authors and funding
6 authors at 2 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Apurinic/apyrimidinic (AP) sites are DNA lesions created under normal growth conditions that result in cytotoxicity, replication-blocks, and mutations. AP sites are susceptible to β-elimination and are liable to be converted to DNA strand breaks. HMCES (5-hydroxymethylcytosine binding, ES cell specific) protein interacts with AP sites in single stranded (ss) DNA exposed at DNA replication forks to generate a stable thiazolidine protein-DNA crosslink and protect cells against AP site toxicity. The crosslinked HMCES is resolved by proteasome-mediated degradation; however, it is unclear how HMCES-crosslinked ssDNA and the resulting proteasome-degraded HMCES adducts are processed and repaired. Here, we describe methods for the preparation of thiazolidine adduct-containing oligonucleotides and determination of their structure. We demonstrate that the HMCES-crosslink is a strong replication blocking adduct and that protease-digested HMCES adducts block DNA replication to a similar extent as AP sites. Moreover, we show that the human AP endonuclease APE1 incises DNA 5' to the protease-digested HMCES adduct. Interestingly, while HMCES-ssDNA crosslinks are stable, the crosslink is reversed upon the formation of dsDNA, possibly due to a catalytic reverse reaction. Our results shed new light on damage tolerance and repair pathways for HMCES-DNA crosslinks in human cells.
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