Bovine Skeletal Muscle Adenosine Deaminase: Kinetic and Thermodynamic Studies
Pedro V. Castro-Martínez, José Marı́a Zumalacárregui, V.K. Dı́ez
Abstract
Pedro V. Castro-Martínez, José Marı́a Zumalacárregui, V.K. Dı́ez
Abstract
Adenosine deaminase from bovine skeletal muscle catalyzes the hydrolytic deamination of adenosine to inosine and ammonia via an ordered Uni-Bi mechanism, if water is not considered as a true second substrate, as deduced from the inhibition pattern products. The inhibition constants (Ki) obtained for inosine and ammonia were 316 mumol/l and 2 mol/l, respectively. The activation energy of the reaction has been calculated as 10 kcal/mol, delta H* and delta F* as 7.9 and 15.6 kcal/mol, respectively, and delta S* as -23 cal/mol/degrees K.
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Adenosine deaminase from bovine skeletal muscle catalyzes the hydrolytic deamination of adenosine to inosine and ammonia via an ordered Uni-Bi mechanism, if water is not considered as a true second substrate, as deduced from the inhibition pattern products. The inhibition constants (Ki) obtained for inosine and ammonia were 316 mumol/l and 2 mol/l, respectively. The activation energy of the reaction has been calculated as 10 kcal/mol, delta H* and delta F* as 7.9 and 15.6 kcal/mol, respectively, and delta S* as -23 cal/mol/degrees K.
Key concepts: Inosine, Deamination, Adenosine deaminase, AMP deaminase, Chemistry, Ammonia, Skeletal muscle, Adenosine