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Biochemistry|November 26, 1991
Dissociation of calcium from the phosphorylated calcium-transporting adenosine triphosphatase of sarcoplasmic reticulum: kinetic equivalence of the calcium ions bound to the phosphorylated enzymeA M Hanel, W P JencksBiochemistry|November 15, 1988
Binding of Ca2+ to the calcium adenosinetriphosphatase of sarcoplasmic reticulumJ R Petithory, W P JencksBiochemistry|July 12, 1988
Thiazolium C(2)-proton exchange: structure-reactivity correlations and the pKa of thiamin C(2)-H revisitedM W Washabaugh, W P JencksThe Journal of Biological Chemistry|September 25, 1979
Formation of stable anhydrides from CoA transferase and hydroxamic acidsC M Pickart, W P JencksThe Journal of Biological Chemistry|October 15, 1987
Acetyl phosphate as a substrate for the calcium ATPase of sarcoplasmic reticulumA L Bodley, W P JencksThe Journal of Biological Chemistry|June 15, 1986
Two functional domains of coenzyme A activate catalysis by coenzyme A transferase. Pantetheine and adenosine 3'-phosphate 5'-diphosphateC A Fierke, W P JencksBiochemistry|September 1, 1981
Modification and inactivation of CoA transferase by 2-nitro-5-(thiocyanato)benzoateL A Kindman, W P JencksThe Journal of Biological Chemistry|March 25, 1976
Utilization of the inactivation rate of coenzyme A transferase by thiol reagents to determine properties of the enzyme-CoA intermediateH White, F Solomon, W P JencksBiochemistry|September 19, 1995
Role of binding energy with coenzyme A in catalysis by 3-oxoacid coenzyme A transferaseA Whitty, C A Fierke, W P JencksBiochemistry|August 31, 1993
Catalysis of the hydrolysis of phosphorylated pyridines by alkaline phosphatase has little or no dependence on the pKa of the leaving groupB I Labow, D Herschlag, W P JencksPageof 16