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Guanine Oxidation in Double-Stranded DNA by Mn-TMPyP/KHSO<sub>5</sub>: 5,8-Dihydroxy-7,8-dihydroguanine Residue as a Key Precursor of Imidazolone and Parabanic Acid Derivatives
88
Citations
25
References
2000
Year
Guanine OxidationDouble-stranded DnaNucleic Acid ChemistryDnaBioorganic ChemistryBiochemistryNatural SciencesKey PrecursorGuanine ResiduesNucleic Acid BiochemistryOligonucleotideMolecular BiologyDna AnalysisDna ComputingChemical BiologyWater MoleculeRedox Biology
The mechanism of oxidation of guanine residues on double-stranded oligonucleotides (ODNs) by the chemical nuclease Mn-TMPyP/KHSO5 is reported. By using HPLC coupled to an electrospray mass spectrometer (ESI/MS) the different oxidized ODN strands were directly analyzed, and labeling experiments in H218O allowed us to propose a two-electron oxidation mechanism for guanine residues engaged in double-stranded DNA. We found that the imidazolone derivative (dIz) was formed by trapping of a guanine-cation by a water molecule. Two reaction intermediates on the pathway of the formation of dIz were observed: 5,8-dihydroxy-7,8-dihydroguanine and an oxidized guanidinohydantoin intermediate. Furthermore, a secondary route of guanine oxidation leading to parabanic acid was also evidenced. The mechanism of the different routes of guanine oxidation in double-stranded DNA has been discussed in detail.
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