2012
Chapter Two Analyzing ATP Utilization by DEAD-Box RNA Helicases Using Kinetic and Equilibrium Methods
Bradley MJ, De La Cruz EM. Chapter Two Analyzing ATP Utilization by DEAD-Box RNA Helicases Using Kinetic and Equilibrium Methods. Methods In Enzymology 2012, 511: 29-63. PMID: 22713314, PMCID: PMC7768905, DOI: 10.1016/b978-0-12-396546-2.00002-4.Peer-Reviewed Original ResearchConceptsDEAD-box RNA helicasesProduct release rate constantsEscherichia coli DbpAATP utilizationSteady-state ATPase activityRNA unwindingRNA helicasesATP bindingPreferred kinetic pathwayDsRNA unwindingConformational rearrangementsATPase activityRNAUnwindingCombination of equilibriumMss116HelicasesDbpAChapter TwoSubstrate propertiesSolution conditionsPathwayBindingKinetic pathwaysRearrangement
2011
Kinetic Analysis of Autotaxin Reveals Substrate-specific Catalytic Pathways and a Mechanism for Lysophosphatidic Acid Distribution*
Saunders LP, Cao W, Chang WC, Albright RA, Braddock DT, De La Cruz EM. Kinetic Analysis of Autotaxin Reveals Substrate-specific Catalytic Pathways and a Mechanism for Lysophosphatidic Acid Distribution*. Journal Of Biological Chemistry 2011, 286: 30130-30141. PMID: 21719699, PMCID: PMC3191052, DOI: 10.1074/jbc.m111.246884.Peer-Reviewed Original ResearchConceptsLysophosphatidic acidSecreted lysophospholipase DThr-210Synthase cycleVivo substrateSubstrate bindingQuantitative physiological modelsSignaling cascadesPosition 210LPA signalingCatalytic threonineFluorescent lipidLysophospholipase DCancer metastasisSlow catalysisCatalytic pathwayDiazol-4PathwayAutotaxinProduct releaseBindsLPA synthesisFS-3Acid distributionBioactive form