Browsing by Author Sandala, Gregory

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Showing results 1 to 12 of 12
Issue DateTitleAuthor(s)Citation
2008The Carbon-Skeleton Rearrangement in Tropane Alkaloid BiosynthesisRadom, Leo; Sandala, Gregory; Smith, David M; Chemistry; ChemistryThe Carbon-Skeleton Rearrangement in Tropane Alkaloid Biosynthesis, Journal of the American Chemical Society, vol.130, 32, 2008,pp 10684-10690
2005Divergent mechanisms of suicide inactivation for ethanolamine ammonia-lyaseRadom, Leo; Sandala, Gregory; Smith, David M; Chemistry; ChemistryDivergent mechanisms of suicide inactivation for ethanolamine ammonia-lyase, Journal of the American Chemical Society, vol.127,(24),2005,pp 8856-8864
2012The elusive 5'-deoxyadenosyl radical in coenzyme-B(12)-mediated reactionsBucher, Denis; Radom, Leo; Sandala, Gregory; Durbeej, Bo; Smith, David M.; Physics; Chemistry; ChemistryThe elusive 5'-deoxyadenosyl radical in coenzyme-B(12)-mediated reactions, Journal of the American Chemical Society, vol.134, 3, 2012,pp 1591-1599
2006In Search of Radical Intermediates in the Reactions Catalyzed by Lysine 2,3-Aminomutase and Lysine 5,6-AminomutaseRadom, Leo; Sandala, Gregory; Smith, David M; Chemistry; ChemistryIn Search of Radical Intermediates in the Reactions Catalyzed by Lysine 2,3-Aminomutase and Lysine 5,6-Aminomutase, Journal of the American Chemical Society, vol.128,(50),2006,pp 16004-16005
2006Insights into the hydrogen-abstraction reactions of diol dehydratase: Relevance to the catalytic mechanism and suicide inactivationRadom, Leo; Sandala, Gregory; Coote, Michelle L; Golding, Bernard T; Smith, David M; Chemistry; ChemistryInsights into the hydrogen-abstraction reactions of diol dehydratase: Relevance to the catalytic mechanism and suicide inactivation, Journal of the American Chemical Society, vol.128,(10),2006,pp 3433-3444
2009The mechanism of action of coenzyme B12: A computational approach (INVITED LECTURE)Baric, Danijela; Bucher, Denis; Durbeej, Bo; Kovacevic, Borislav; Radom, Leo; Sandala, Gregory; Coote, Michelle L; Golding, Bernard T; Marsh, E Neil G; Smith, David M; Wetmore, Stacey D; Chemistry; Physics; Chemistry; Chemistry; Chemistry; ChemistryThe mechanism of action of coenzyme B12: A computational approach (INVITED LECTURE), N/A, vol.N/A,(),2009,pp 24-24
2010Modeling the reactions catalyzed by coenzyme B12-dependent enzymesRadom, Leo; Sandala, Gregory; Smith, David M; Chemistry; ChemistryModeling the reactions catalyzed by coenzyme B12-dependent enzymes, Accounts Of Chemical Research, vol.43, 5, 2010,pp 642-651
2009On the importance of ribose orientation in the substrate activation of the coenzyme B(-12)-dependent mutasesBucher, Denis; Durbeej, Bo; Radom, Leo; Sandala, Gregory; Smith, David M; Physics; Chemistry; Chemistry; ChemistryOn the importance of ribose orientation in the substrate activation of the coenzyme B(-12)-dependent mutases, Chemistry: A European Journal, vol.15,(34),2009,pp 8578-8585
2009On the reaction of glycerol dehydratase with but-3-ene-1,2-diolBaric, Danijela; Kovacevic, Borislav; Radom, Leo; Sandala, Gregory; Smith, David M; Chemistry; Chemistry; Chemistry; ChemistryOn the reaction of glycerol dehydratase with but-3-ene-1,2-diol, Chemistry: A European Journal, vol.15,(19),2009,pp 4865-4873
2004Suicide Inactivation Of Dioldehydratase By Glycolaldehyde And Chloroacetaldehyde: An Examination Of The Reaction MechanismRadom, Leo; Sandala, Gregory; Coote, Michelle L; Smith, David M; Chemistry; ChemistrySuicide Inactivation Of Dioldehydratase By Glycolaldehyde And Chloroacetaldehyde: An Examination Of The Reaction Mechanism, Journal of the American Chemical Society, vol.126,(39),2004,pp 12206-12207
2007Toward an improved understanding of the glutamate mutase systemRadom, Leo; Sandala, Gregory; Marsh, E Neil G; Smith, David M; Chemistry; ChemistryToward an improved understanding of the glutamate mutase system, Journal of the American Chemical Society, vol.129,(6),2007,pp 1623-1633
2004The Unusual Bifunctional Catalysis Of Epimerization And Desaturation By Carbapenem SynthaseRadom, Leo; Sandala, Gregory; Easton, Christopher J; Schofield, Christopher J; Smith, David M; Topf, Maya; Chemistry; ChemistryThe Unusual Bifunctional Catalysis Of Epimerization And Desaturation By Carbapenem Synthase, Journal of the American Chemical Society, vol.126,(32),2004,pp 9932-9933