ReviewAccounts of chemical research2012
The formamidopyrimidines: purine lesions formed in competition with 8-oxopurines from oxidative stress.
Review in Accounts of chemical research, 2012. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 61 papers.
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Who cites it
61 citing papers in PubMed, 93 citations in OpenAlex.
- Review
- Chemistry and biology of oxidatively damaged RNA nucleotides.RSC chemical biology · 2026Review
- Contribution of One-Electron Oxidation of Purine and Pyrimidine Bases to the Photo- and Radiation-Induced Damage to Cellular DNA.Chemphyschem : a European journal of chemical physics and physical chemistry · 2026Review
- Association of Blood Plasma Vascular Endothelial Growth Factor and Testicular Artery Doppler Parameters with Canine Sperm Freezability.Animals : an open access journal from MDPI · 2026Article
- Ribonucleobase Oxidation and Ribonucleases Involved in the Degradation of Oxidized RNA.Biomolecules · 2026Review
- Plant tolerance mechanisms to DNA-damaging UV stress.Journal of experimental botany · 2025Review
- A human high-fidelity DNA polymerase holoenzyme has a wide range of lesion bypass activities.Nucleic acids research · 2025Article
- Purine Chemistry in the Early RNA World at the Origins of Life: From RNA and Nucleobases Lesions to Current Key Metabolic Routes.Chembiochem : a European journal of chemical biology · 2025Review
- Inhibition by 4-(4-Bromo-2-oxo-3Biochemistry · 2025Article
- Role of NEIL1 in genome maintenance.DNA repair · 2025Review
- Why the ROS matters: One-electron oxidants focus DNA damage and repair on G-quadruplexes for gene regulation.DNA repair · 2025Review
- Hole Transfer and the Resulting DNA Damage.Biomolecules · 2024Review
- A human high-fidelity DNA polymerase holoenzyme has a wide range of lesion bypass activities.bioRxiv : the preprint server for biology · 2024Article
- How Do ROS Induce NETosis? Oxidative DNA Damage, DNA Repair, and Chromatin Decondensation.Biomolecules · 2024Review
- 8-OxodGuo and Fapy•dG Mutagenicity inChemical research in toxicology · 2024Article
- Biochemical and structural characterization of Fapy•dG replication by Human DNA polymerase β.Nucleic acids research · 2024Article
- Host metabolomic responses in recurrent P. vivax malaria.Scientific reports · 2024Article
- Chemical Insights into Oxidative and Nitrative Modifications of DNA.International journal of molecular sciences · 2023Review
- Hydroxyl Radical vs. One-Electron Oxidation Reactivities in an Alternating GC Double-Stranded Oligonucleotide: A New Type Electron Hole Stabilization.Biomolecules · 2023Article
- Article
1 more citing papers are in PubMed but not listed here.
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1 author at 1 institution in 1 country.
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Abstract
DNA is constantly exposed to agents that induce structural damage, from sources both internal and external to an organism. Endogenous species, such as oxidizing chemicals, and exogenous agents, such as ultraviolet rays in sunlight, together produce more than 70 distinct chemical modifications of native nucleotides. Of these, about 15 of the lesions have been detected in cellular DNA. This kind of structural DNA damage can be cytotoxic, carcinogenic, or both and is being linked to an increasingly lengthy list of diseases. The formamidopyrimidine (Fapy) lesions are a family of DNA lesions that result after purines undergo oxidative stress. The Fapy lesions are produced in yields comparable to the 8-oxopurines, which, owing in part to a perception of mutagenicity in some quarters, have been subjected to intense research scrutiny. But despite the comparable abundance of the formamidopyrimidines and the 8-oxopurines, until recently very little was known about the effects of Fapy lesions on biochemical processes involving DNA or on the structure and stability of the genomic material. In this Account, we discuss the detection of Fapy lesions in DNA and the mechanism proposed for their formation. We also describe methods for the chemical synthesis of oligonucleotides containing Fapy·dA or Fapy·dG and the outcomes of chemical and biochemical studies utilizing these compounds. These experiments reveal that the formamidopyrimidines decrease the fidelity of polymerases and are substrates for DNA repair enzymes. The mutation frequency of Fapy·dG in mammals is even greater than that of 8-oxodGuo (8-oxo-7,8-dihydro-2'-deoxyguanosine, one of the 8-oxopurines), suggesting that this lesion could be a useful biomarker and biologically significant. Despite clear similarities, the formamidopyrimidines have lived in the shadow of the corresponding 8-oxopurine lesions. But the recent development of methods for synthesizing oligonucleotides containing Fapy·dA or Fapy·dG has accelerated research on these lesions, revealing that the formamidopyrimidines are repaired as efficiently and, in some cases, more rapidly than the 8-oxopurines. Fapy·dG appears to be a lesion of biochemical consequence, and further study of its mutagenicity, repair, and interactions with DNA structure will better define the cellular details involving this important product of DNA stress.
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