Novel Fluorescent Phosphonic Acid Esters for Discrimination of Lipases and Esterases
- 29 September 2005
- journal article
- Published by Wiley in ChemBioChem
- Vol. 6 (10) , 1776-1781
- https://doi.org/10.1002/cbic.200500013
Abstract
Lipases and esterases are responsible for carboxylester hydrolysis inside and outside cells and are useful biocatalysts for (stereo)selective modification of synthetic substrates. Here we describe novel fluorescent suicide inhibitors that differ in structure and polarity for screening and discrimination of lipolytic enzymes in enzyme preparations. The inhibitors covalently react with the enzymes to form fluorescent lipid–protein complexes that can be resolved by gel electrophoresis. The selectivities of the inhibitors were determined by using different (phospho)lipase, esterase and cholesterol esterase preparations. The results indicate that formation of an inhibitor–enzyme complex is highly dependent on the chemical structure of the inhibitor. We identified inhibitors with very low specificity, and other derivatives that were highly specific for certain subgroups of lipolytic enzymes such as lipases and cholesterol esterases. A combination of these substrate‐analogous activity probes represents a useful toolbox for rapid identification and classification of serine hydrolase enzymes.Keywords
This publication has 19 references indexed in Scilit:
- Chemical Strategies for Activity‐Based ProteomicsChemBioChem, 2003
- Identification of various lipolytic enzymes in crude porcine pancreatic lipase preparations using covalent fluorescent inhibitorsBiotechnology & Bioengineering, 2003
- Small Molecule Affinity Fingerprinting: a Tool for Enzyme Family Subclassification, Target Identification, and Inhibitor DesignChemistry & Biology, 2002
- A novel esterase from Burkholderia gladioli which shows high deacetylation activity on cephalosporins is related to β-lactamases and dd-peptidasesJournal of Biotechnology, 2001
- Chemical strategies for the global analysis of protein functionCurrent Opinion in Chemical Biology, 2000
- On the interfacial activation of Candida antarctica lipase A and B as compared with Humicola lanuginosa lipasePublished by Elsevier ,1999
- Bacterial lipolytic enzymes: classification and propertiesBiochemical Journal, 1999
- Phosphonate analogues of triacylglycerols are potent inhibitors of lipaseBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1995
- Elucidating structure-mechanism relationships in lipases: Prospects for predicting and engineering catalytic propertiesTrends in Biotechnology, 1994
- A model for interfacial activation in lipases from the structure of a fungal lipase-inhibitor complexNature, 1991