AbstractThis study was done to better understand how lipases are activated at an interface. We investigated the conformational and solvation changes occurring during the adsorption of Humicola lanuginosa lipase (HLL) onto a hydrophobic surface using Fourier transform infrared-attenuated total reflection spectroscopy. The hydrophobic surfaces were obtained by coating silicon attenuated total reflection crystal with octadecyltrichlorosilane. Analysis of vibrational spectra was used to compare the conformation of HLL adsorbed at the aqueous-solid interface with its conformation in solution. X-ray crystallography has shown that HLL exists in two conformations, the closed and open forms. The conformational changes in HLL caused by adsorption ont...
This paper describes a technique that uses mixed self-assembled monolayers of two alkanethiolates (S...
We have investigated the effect of different solvents on the dynamics of Rhizomucor miehei lipase. M...
AbstractLipases catalyze lipolytic reactions and for optimal activity they require a lipid interface...
International audienceThis study was done to better understand how lipases are activated at an inter...
AbstractThis study was done to better understand how lipases are activated at an interface. We inves...
International audienceFTIR-ATR spectroscopy has been used to study in-situ adsorption of enzymes at ...
AbstractElectron density profiles calculated from molecular dynamics trajectories are used to deduce...
AbstractDetergent (pentaoxyethylene octyl ether, C8E5)-induced conformational changes of Humicola la...
This thesis aimed to give more insight in the dynamics of enzymes at interfaces. The adsorption and ...
Systems using immobilized enzymes are attractive for a wide range of industrial and medical applicat...
AbstractA new type of planar lipid substrate for Humicola lanuginosa lipase (HLL) has been prepared ...
Interfacial activation of Rhizomucor miehei lipase is accompanied by a hinge-type motion of a single...
In the pharmaceutical industry, protein drugs are modified by, for instance, glycosylation in order ...
The physicochemical properties of protein layers at the solid–liquid interface are essential in many...
Conformational changes occurring to the open form of five different lipases were studied by means of...
This paper describes a technique that uses mixed self-assembled monolayers of two alkanethiolates (S...
We have investigated the effect of different solvents on the dynamics of Rhizomucor miehei lipase. M...
AbstractLipases catalyze lipolytic reactions and for optimal activity they require a lipid interface...
International audienceThis study was done to better understand how lipases are activated at an inter...
AbstractThis study was done to better understand how lipases are activated at an interface. We inves...
International audienceFTIR-ATR spectroscopy has been used to study in-situ adsorption of enzymes at ...
AbstractElectron density profiles calculated from molecular dynamics trajectories are used to deduce...
AbstractDetergent (pentaoxyethylene octyl ether, C8E5)-induced conformational changes of Humicola la...
This thesis aimed to give more insight in the dynamics of enzymes at interfaces. The adsorption and ...
Systems using immobilized enzymes are attractive for a wide range of industrial and medical applicat...
AbstractA new type of planar lipid substrate for Humicola lanuginosa lipase (HLL) has been prepared ...
Interfacial activation of Rhizomucor miehei lipase is accompanied by a hinge-type motion of a single...
In the pharmaceutical industry, protein drugs are modified by, for instance, glycosylation in order ...
The physicochemical properties of protein layers at the solid–liquid interface are essential in many...
Conformational changes occurring to the open form of five different lipases were studied by means of...
This paper describes a technique that uses mixed self-assembled monolayers of two alkanethiolates (S...
We have investigated the effect of different solvents on the dynamics of Rhizomucor miehei lipase. M...
AbstractLipases catalyze lipolytic reactions and for optimal activity they require a lipid interface...