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N Biotechnol ; 27(1): 46-52, 2010 Feb 28.
Article in English | MEDLINE | ID: mdl-19931658

ABSTRACT

Calotropis procera R. Br. carboxylesterase (EC 3.1.1.1) solubilized in reversed micellar glycerol droplets containing a very small amount of water (less than 5ppm) and stabilized by a surfactant effectively catalyzed the esterification between glycerol and capric acid to produce 1-monocaprin. Reaction variables including surfactant types, organic solvent media, reaction time, G-value ([glycerol]/[capric acid]), R-value ([water]/[surfactant]), pH, temperature, and types of metal ion inhibitors on the carboxylesterase-catalyzed esterification were characterized and optimized to efficiently produce 1-monocaprin. Bis(2-ethylhexyl) sodium sulfosuccinate (AOT) and isooctane were the most effective surfactant and organic solvent medium, respectively, for 1-monocaprin formation in reversed micelles. The optimum G- and R-values were 3.0 and 0.05, respectively, and the optimum pH and temperature were determined to be 10.0 and 60 degrees C, respectively. K(m,app.) and V(max,app.) were calculated from a Hanes-Woolf plot, and the values were 9.64 mM and 2.45 microM/min mg protein, respectively. Among various metal ions, Cu(2+) and Fe(2+) severely inhibited carboxylesterase-catalyzed esterification activity (less than 6.0% of relative activity).


Subject(s)
Carboxylesterase/metabolism , Decanoic Acids , Emulsifying Agents , Glycerides/metabolism , Glycerol/metabolism , Micelles , Plant Proteins/metabolism , Calotropis/enzymology , Carboxylesterase/antagonists & inhibitors , Copper/metabolism , Decanoic Acids/chemistry , Decanoic Acids/metabolism , Emulsifying Agents/chemistry , Emulsifying Agents/metabolism , Esterification , Glycerides/chemistry , Glycerol/chemistry , Iron/metabolism , Plant Proteins/antagonists & inhibitors
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