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Altering the activation mechanism in
Thermomyces lanuginosus
lipase
Jakob Skjold-Jørgensen, Jesper Vind, Allan Svendsen,
Morten Jannik Bjerrum
Department of Chemistry
34
Citations (Scopus)
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Dive into the research topics of 'Altering the activation mechanism in
Thermomyces lanuginosus
lipase'. Together they form a unique fingerprint.
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Keyphrases
Ferulic Acid Esterase
100%
Lipase
100%
Activation Mechanism
100%
Thermomyces Lanuginosus Lipase
100%
Interfacial Activation
33%
Fast Activation
33%
Lipid Interface
33%
Rational Design
33%
Aspergillus Terreus
33%
Lipase Activity
33%
Critical Micelle Concentration
16%
Activity Measurement
16%
Ability to Act
16%
Esterase
16%
Aspergillus Niger
16%
Aqueous Solution
16%
Soluble Substrate
16%
Protein Surface
16%
Hydrophobic Surface
16%
Fold Increase
16%
Butyrate
16%
Calcium-dependent
16%
Fluorophore
16%
Blue Shift
16%
Esters
16%
Site-directed mutagenesis
16%
Calcium Minerals
16%
Surface Area Measurement
16%
Acetate
16%
Residue Composition
16%
Biochemistry, Genetics and Molecular Biology
Triacylglycerol Lipase
100%
Thermomyces lanuginosus
100%
Pancreatic Lipase
100%
Esterase
70%
Ferulic Acid
60%
Lipid
20%
Butyrate
10%
Aqueous Solution
10%
Membrane Protein
10%
Critical Micelle Concentration
10%
Site-Directed Mutagenesis
10%
Aspergillus niger
10%
Transmembrane Protein
10%
Surface Area
10%
Pharmacology, Toxicology and Pharmaceutical Science
Pancreatic Lipase
100%
Esterase
70%
Ferulic Acid
60%
Buffer
20%
Site-Directed Mutagenesis
10%
Critical Micelle Concentration
10%
Butyrate
10%
Ethylenediaminetetraacetic Acid
10%
Membrane Protein
10%
Aspergillus niger
10%
Chemistry
Ferulic Acid
100%
Buffer Solution
33%
Site-Directed Mutagenesis
16%
Water Soluble
16%
Ethylenediaminetetraacetic Acid
16%
Surface Area
16%
Critical Micelle Concentration
16%
Hydrophobic Surface
16%
Blue
16%
Butyrate
16%
Aqueous Solution
16%
Phase Composition
16%