Hickel_1999_Biotechnol.Bioeng_65_425

Reference

Title : Hydroxynitrile lyase at the diisopropyl ether\/water interface: evidence for interfacial enzyme activity - Hickel_1999_Biotechnol.Bioeng_65_425
Author(s) : Hickel A , Radke CJ , Blanch HW
Ref : Biotechnol Bioeng , 65 :425 , 1999
Abstract : A novel recycle reactor has been designed to determine the interfacial activity of hydroxynitrile lyase in a diisopropyl ether (DIPE)/water two-phase system. The reactor provides a known interfacial area. Enzyme activity toward mandelonitrile cleavage is continuously measured in the reactor by following benzaldehyde product formation in the DIPE organic phase with an optical flow cell. For the first time, we establish that this enzymatic reaction is carried out by the hydroxynitrile lyase residing at the organic solvent/water interface and not in the aqueous bulk phase. Hydroxynitrile lyase adsorbs at the interface and exhibits extraordinary stability. Denaturation does not occur over several hours, although the surface pressure increases under the same conditions over this time span. Increases in surface pressure indicate enzyme penetration through the interface although no loss of enzyme activity is observed. Adsorption of p-Hnl at the interface is fit by the Langmuir equilibrium adsorption model with an adsorption equilibrium constant of 0.032 L mg(-1). For the mandelonitrile-cleavage reaction at ambient temperature, p-Hnl follows Michaelis-Menten kinetics at the interface with a Michaelis constant of 14.4 mM and a specific activity close that for the bulk aqueous phase.
ESTHER : Hickel_1999_Biotechnol.Bioeng_65_425
PubMedSearch : Hickel_1999_Biotechnol.Bioeng_65_425
PubMedID: 10506418

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Citations formats

Hickel A, Radke CJ, Blanch HW (1999)
Hydroxynitrile lyase at the diisopropyl ether\/water interface: evidence for interfacial enzyme activity
Biotechnol Bioeng 65 :425

Hickel A, Radke CJ, Blanch HW (1999)
Biotechnol Bioeng 65 :425