Resorufin Butyrate as a Soluble and Monomeric High-Throughput Substrate for a Triglyceride Lipase
Author(s) -
Vincent Lam,
Martin Hénault,
Karine Khougaz,
Louis-Jacques Fortin,
Marc Ouellet,
Roman A. Melnyk,
Anthony W. Partridge
Publication year - 2011
Publication title -
slas discovery
Language(s) - English
Resource type - Journals
eISSN - 2472-5560
pISSN - 2472-5552
DOI - 10.1177/1087057111422944
Subject(s) - lipase , butyrate , lipoprotein lipase , biochemistry , substrate (aquarium) , chemistry , triglyceride , high throughput screening , small molecule , hepatic lipase , enzyme , monomer , biology , cholesterol , organic chemistry , polymer , fermentation , ecology
Triglyceride lipases such as lipoprotein lipase, endothelial lipase, and hepatic lipase play key roles in controlling the levels of plasma lipoprotein. Accordingly, small-molecule modulation of these species could alter patient lipid profiles with corresponding health effects. Screening of these enzymes for small-molecule therapeutics has historically involved the use of lipid-based particles to mimic native substrates. However, particle-based artifacts can complicate the discovery of therapeutic molecules. As a simplifying solution, the authors sought to develop an approach involving a soluble and monomeric lipase substrate. Using purified bovine lipoprotein lipase as a model system, they show that the hydrolysis of resorufin butyrate can be fluorescently monitored to give a robust assay (Z' > 0.8). Critically, using parallel approaches, they show that resorufin butyrate is soluble and monomeric under assay conditions. The presented assay should be useful as a simple and inexpensive primary or secondary screen for the discovery of therapeutic lipase modulators.
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