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27 results on '"Sheila S. David"'

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1. NEIL1 Recoding due to RNA Editing Impacts Lesion-Specific Recognition and Excision

2. Detection of OG:A Lesion Mispairs by MutY Relies on a Single His Residue and the 2-Amino Group of 8-Oxoguanine

3. 2′-Fluorinated Hydantoins as Chemical Biology Tools for Base Excision Repair Glycosylases

4. The Zinc Linchpin Motif in the DNA Repair Glycosylase MUTYH: Identifying the Zn2+ Ligands and Roles in Damage Recognition and Repair

5. Sulfur K-Edge XAS Studies of the Effect of DNA Binding on the [Fe4S4] Site in EndoIII and MutY

6. Base Excision Repair of N6-Deoxyadenosine Adducts of 1,3-Butadiene

7. Gas-Phase Studies of Substrates for the DNA Mismatch Repair Enzyme MutY

8. Mutation versus Repair: NEIL1 Removal of Hydantoin Lesions in Single-Stranded, Bulge, Bubble, and Duplex DNA Contexts

9. Superior Removal of Hydantoin Lesions Relative to Other Oxidized Bases by the Human DNA Glycosylase hNEIL1

10. Efficient Removal of Formamidopyrimidines by 8-Oxoguanine Glycosylases

11. In Vitro Ligation of Oligodeoxynucleotides Containing C8-Oxidized Purine Lesions Using Bacteriophage T4 DNA Ligase

12. Insight into the Roles of Tyrosine 82 and Glycine 253 in the Escherichia coli Adenine Glycosylase MutY

13. Probing the Requirements for Recognition and Catalysis in Fpg and MutY with Nonpolar Adenine Isosteres

14. Recognition and Removal of Oxidized Guanines in Duplex DNA by the Base Excision Repair Enzymes hOGG1, yOGG1, and yOGG2

15. Escherichia coli MutY and Fpg Utilize a Processive Mechanism for Target Location

16. Noncysteinyl Coordination to the [4Fe-4S]2+ Cluster of the DNA Repair Adenine Glycosylase MutY Introduced via Site-Directed Mutagenesis. Structural Characterization of an Unusual Histidinyl-Coordinated Cluster

17. Removal of Hydantoin Products of 8-Oxoguanine Oxidation by the Escherichia coli DNA Repair Enzyme, FPG

18. A Single Engineered Point Mutation in the Adenine Glycosylase MutY Confers Bifunctional Glycosylase/AP Lyase Activity

19. Recognition of the Nonpolar Base 4-Methylindole in DNA by the DNA Repair Adenine Glycosylase MutY

20. Formation of a Schiff Base Intermediate Is Not Required for the Adenine Glycosylase Activity of Escherichia coli MutY

21. Single-Turnover and Pre-Steady-State Kinetics of the Reaction of the Adenine Glycosylase MutY with Mismatch-Containing DNA Substrates

22. Specific Recognition of Substrate Analogs by the DNA Mismatch Repair Enzyme MutY

24. Anion binding to uteroferrin. Evidence for phosphate coordination to the iron(III) ion of the dinuclear active site and interaction with the hydroxo bridge

27. Hydrogen and deuterium NMR studies of carboxylate coordination to iron(III) complexes: diverse chemical shift values for coordinated carboxyl residues

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