2020
Allosteric Impact of the Variable Insert Loop in Vaccinia H1-Related (VHR) Phosphatase
Beaumont VA, Reiss K, Qu Z, Allen B, Batista VS, Loria JP. Allosteric Impact of the Variable Insert Loop in Vaccinia H1-Related (VHR) Phosphatase. Biochemistry 2020, 59: 1896-1908. PMID: 32348128, PMCID: PMC7364816, DOI: 10.1021/acs.biochem.0c00245.Peer-Reviewed Original ResearchConceptsAcid loopVariable insertActive siteActive-site hydrogen bondsInsert regionSolution nuclear magnetic resonanceNuclear magnetic resonanceMillisecond motionsActive site environmentNormal catalytic functionActive site altersMolecular dynamics simulationsActive site loopHydrogen bondsVaccinia H1Asparagine 74Protein tyrosineTyrosine phosphataseRapid kinetic measurementsAllosteric regionActivity of enzymesKinetic measurementsDynamics simulationsConformational motionsInsert loop
2011
Reengineering Rate-Limiting, Millisecond Enzyme Motions by Introduction of an Unnatural Amino Acid
Watt ED, Rivalta I, Whittier SK, Batista VS, Loria JP. Reengineering Rate-Limiting, Millisecond Enzyme Motions by Introduction of an Unnatural Amino Acid. Biophysical Journal 2011, 101: 411-420. PMID: 21767494, PMCID: PMC3136797, DOI: 10.1016/j.bpj.2011.05.039.Peer-Reviewed Original ResearchConceptsUnnatural amino acidsAmino acidsMeiboom-Gill (CPMG) relaxation dispersion experimentsWild-type ribonuclease AProtein energy landscapesNonnatural amino acidsRelaxation dispersion experimentsSingle residueProtein motionsMillisecond motionsConformational motionsEnzyme motionsHistidine-48Ribonuclease ACatalytic turnoverSimilar pH rangeRate limitingMolecular dynamics simulationsEnergy landscapeCorrelated motionAcidCatalytic cycleDispersion experimentsResiduesDynamics simulations