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32 results on '"Beuning, Penny J."'

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1. The backbone NMR resonance assignments of the stabilized E. coli β clamp.

2. Functional annotation of haloacid dehalogenase superfamily structural genomics proteins.

3. ILV methyl NMR resonance assignments of the 81 kDa E. coli β-clamp.

4. Stereoselective Synthesis of β-Glycinamide Ribonucleotide.

5. NMR resonance assignments for the nucleotide binding domains of the E. coli clamp loader complex γ subunit.

6. DNA Adductomics by mass tag prelabeling.

8. Probing remote residues important for catalysis in Escherichia coli ornithine transcarbamoylase.

9. Functional classification of protein structures by local structure matching in graph representation.

10. Single-molecule mechanochemical characterization of E. coli pol III core catalytic activity.

11. Altering the N-terminal arms of the polymerase manager protein UmuD modulates protein interactions.

12. Noncognate DNA damage prevents the formation of the active conformation of the Y-family DNA polymerases DinB and DNA polymerase κ.

13. Prediction of distal residue participation in enzyme catalysis.

15. Polymerase Switching in Response to DNA Damage.

18. Multiple Strategies for Translesion Synthesis in Bacteria.

19. Effects of non-catalytic, distal amino acid residues on activity of E. coli DinB (DNA polymerase IV).

22. Synthetic Nucleotides as Probes of DNA Polymerase Specificity.

23. Crystal structure of a metal-dependent phosphoesterase (YP_910028.1) from Bifidobacterium adolescentis: Computational prediction and experimental validation of phosphoesterase activity.

24. The Roles of UmuD in Regulating Mutagenesis.

25. Two processivity clamp interactions differentially alter the dual activities of UmuC.

26. Hydrolitic editing by a class II aminoacyl-tRNA synthetase.

28. Specific atomic groups and RNA helix geometry in acceptor stem recognition by a tRNA synthetase.

29. Mammalian DNA Polymerase Kappa Activity and Specificity.

30. Role of zinc ion in translational accuracy becomes crystal clear.

31. Song: SOS (To the Tune of ABBA's "SOS").

32. Active site mutations in the Y family DNA polymerase UmuC cause hypersensitivity to UV light and are dominant negative.

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