AbstractA new type of planar lipid substrate for Humicola lanuginosa lipase (HLL) has been prepared by depositing a monolayer of 1-mono-oleoyl-rac-glycerol (MOG) on top of a monolayer of dipalmitoyl-phosphatidylcholine (DPPC) on mica by the Langmuir–Blodgett (LB) technique. The bilayer was subsequently exposed to HLL in a liquid cell of an atomic force microscope (AFM) allowing the time course of the lipolytic degradation to be observed. By analysing a series of AFM images, we find that enzymes are preferentially activated at the edge of nano-scale defects present in the bilayer prior to enzyme injection, while defect-free areas of the substrate are surprisingly stable towards enzyme degradation. The initial rate of hydrolysis is found to b...
AbstractThis study was done to better understand how lipases are activated at an interface. We inves...
AbstractThe Thermomyces lanuginosa lipase has been extensively studied in industrial and biotechnolo...
AbstractPhospholipase A2, a ubiquitous lipolytic enzyme that actively catalyses hydrolysis of phosph...
AbstractAn important application of liquid cell Atomic Force Microscopy (AFM) is the study of enzyme...
AbstractAtomic force microscopy (AFM) is employed to reveal the morphological changes of the support...
AbstractDetergent (pentaoxyethylene octyl ether, C8E5)-induced conformational changes of Humicola la...
AbstractWe have investigated the time course of the degradation of a supported dipalmitoylphosphatid...
AbstractPhospholipase D from Streptomyces chromofuscus (PLDSc) is a soluble enzyme known to be activ...
The hydrolysis catalyzed by Humicola lanuginosa lipase (HLL) of pure tricaprylin (TC) or stearate of...
AbstractIn situ atomic force microscopy studies reveal a marked influence of the initial presence of...
AbstractThe lag-burst phenomenon in the phospholipase A2 mediated hydrolysis of phospholipid bilayer...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
AbstractIt was proposed that topographic changes in lipid monolayers hydrolyzed by lipolytic enzymes...
AbstractThe sequence of events involved in the transition from attached liposomes to bilayer patches...
AbstractIn this paper we used AFM as an analytical tool to visualize the degradation of a phospholip...
AbstractThis study was done to better understand how lipases are activated at an interface. We inves...
AbstractThe Thermomyces lanuginosa lipase has been extensively studied in industrial and biotechnolo...
AbstractPhospholipase A2, a ubiquitous lipolytic enzyme that actively catalyses hydrolysis of phosph...
AbstractAn important application of liquid cell Atomic Force Microscopy (AFM) is the study of enzyme...
AbstractAtomic force microscopy (AFM) is employed to reveal the morphological changes of the support...
AbstractDetergent (pentaoxyethylene octyl ether, C8E5)-induced conformational changes of Humicola la...
AbstractWe have investigated the time course of the degradation of a supported dipalmitoylphosphatid...
AbstractPhospholipase D from Streptomyces chromofuscus (PLDSc) is a soluble enzyme known to be activ...
The hydrolysis catalyzed by Humicola lanuginosa lipase (HLL) of pure tricaprylin (TC) or stearate of...
AbstractIn situ atomic force microscopy studies reveal a marked influence of the initial presence of...
AbstractThe lag-burst phenomenon in the phospholipase A2 mediated hydrolysis of phospholipid bilayer...
AbstractDuring the past decade, the atomic force microscope (AFM) has become a key technique in bioc...
AbstractIt was proposed that topographic changes in lipid monolayers hydrolyzed by lipolytic enzymes...
AbstractThe sequence of events involved in the transition from attached liposomes to bilayer patches...
AbstractIn this paper we used AFM as an analytical tool to visualize the degradation of a phospholip...
AbstractThis study was done to better understand how lipases are activated at an interface. We inves...
AbstractThe Thermomyces lanuginosa lipase has been extensively studied in industrial and biotechnolo...
AbstractPhospholipase A2, a ubiquitous lipolytic enzyme that actively catalyses hydrolysis of phosph...