Proceedings of the National Academy of Sciences · 2003 · 223 citations · 66 references
Genome InstabilityDna DamageRedox ProcessBiochemistryMuty BoundNatural SciencesMolecular ElectrochemistryBioelectrochemistryMolecular BiologyDna ReplicationDna-bound MutyRedox ChemistryMedicineRedox BiologyElectrochemistry
MutY, like many DNA base excision repair enzymes, contains a [4Fe4S]2+ cluster of undetermined function. Electrochemical studies of MutY bound to a DNA-modified gold electrode demonstrate that the [4Fe4S] cluster of MutY can be accessed in a DNA-mediated redox reaction. Although not detectable without DNA, the redox potential of DNA-bound MutY is approximately 275 mV versus NHE, which is characteristic of HiPiP iron proteins. Binding to DNA is thus associated with a change in [4Fe4S]3+/2+ potential, activating the cluster toward oxidation. Given that DNA charge transport chemistry is exquisitely sensitive to perturbations in base pair structure, such as mismatches, we propose that this redox process of MutY bound to DNA exploits DNA charge transport and provides a DNA signaling mechanism to scan for mismatches and lesions in vivo.
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Electron Transfer Between Bases in Double Helical DNA
Shana O. Kelley, Jacqueline K. Barton · Science · 1999 · 914 citations
Mark L. Michaels, Cintia Cruz, A.P. Grollman et al. · Proceedings of the National Academy of Sciences · 1992 · 587 citations · Full text
Genome Instability, Damaged Form, Nucleic Acid Chemistry +15
Novel DNA binding motifs in the DNA repair enzyme endonuclease III crystal structure.
M.M. Thayer, Holly Ahern, Dajun Xing et al. · The EMBO Journal · 1995 · 491 citations · Full text