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The Journal of Biological Chemistry|September 15, 1991
Reductive methylation of the amino terminus of endonuclease V eradicates catalytic activities. Evidence for an essential role of the amino terminus in the chemical mechanisms of catalysisR D Schrock, R S LloydMicrobiology (Reading, England)|July 3, 2023
Microbial Primer: The logic of bacterial plasmidsGeorgina S Lloyd, Christopher M ThomasThe Journal of Craniofacial Surgery|September 15, 2017
Tissue Engineering Strategies for Auricular ReconstructionMichael J Schroeder, Mark S LloydMutation Research|September 1, 1989
Structure-function studies of the T4 endonuclease V repair enzymeM L Dodson, R S LloydAcademic Emergency Medicine : Official Journal of the Society for Academic Emergency Medicine|April 2, 1998
Predictive validity of the emergency physician and global job satisfaction instrumentsS Lloyd, D Streiner, S ShannonJournal of Molecular Biology|August 20, 1989
Biological consequences of a reduction in the non-target DNA scanning capacity of a DNA repair enzymeD R Dowd, R S LloydMutation Research|August 1, 1987
High-frequency spontaneous deletion of DNA sequences flanked by direct DNA repeats which also contain an internal palindromeR S Lloyd, M L AugustineThe Journal of Biological Chemistry|July 25, 1986
The DNA scanning mechanism of T4 endonuclease V. Effect of NaCl concentration on processive nicking activityE A Gruskin, R S LloydMutation Research|December 12, 2001
Backbone dynamics of DNA containing 8-oxoguanine: importance for substrate recognition by base excision repair glycosylasesM L Dodson, R S LloydBiochemistry|December 7, 2000
Involvement of phylogenetically conserved acidic amino acid residues in catalysis by an oxidative DNA damage enzyme formamidopyrimidine glycosylaseO V Lavrukhin, R S LloydPageof 75