The major objective of the proposed research is to prepare rationally-designed inhibitors of phospholipase-A2. Phospholipase-A2-catalyzed release of arachidonic acid from the phospholipid pool in cell membranes is the rate-limiting step in the biosynthesis of prostaglandins, leukotrienes, and thromboxanes. Phospholipase-A2 inhibitors are known to inhibit processes such as platelet aggregation and therefore may have uses as antithrombotic pharmaceuticals. Furthermore, selective inhibitors of phospholipase-A2 will be useful experimental tools in the delineation of the major pathways responsible for arachidonic acid release in membranes. Phospholipid analogs in which the ester linkage at the sn-2 position has been replaced by a difluoromethylene ketone will be prepared. Fluoro ketone analogs are known to be potent inhibitors of many hydrolytic enzymes. Fluoro ketones exist predominantly in the hydrated form and it is likely that the hydrated ketone will act as a transition state analog inhibitor of phospholipase-A2. Alternatively, the fluoro ketone might form a stable hemiketal with a nucleophile present at the active site of the enzyme. NMR studies will be conducted in order to establish the mode of binding of the fluoro ketone phospholipid analogs to phospholipase-A2. These studies will help in the understanding of the mechanism of lipolysis catalyzed by phospholipase-A2. The use of non-fluorinated and II-o-alcohol phospholipid analogs as inhibitors of phospholipase-A2 will also be investigated. All of the analogs will be initially tested as inhibitors with the soluble pancreatic enzyme. Eventually the studies will be extended to include phospholipase-A2 derived from platelets and other tissues.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Unknown (R23)
Project #
5R23HL036235-02
Application #
3449219
Study Section
Bio-Organic and Natural Products Chemistry Study Section (BNP)
Project Start
1986-05-01
Project End
1989-04-30
Budget Start
1987-05-01
Budget End
1988-04-30
Support Year
2
Fiscal Year
1987
Total Cost
Indirect Cost
Name
University of Washington
Department
Type
Schools of Arts and Sciences
DUNS #
135646524
City
Seattle
State
WA
Country
United States
Zip Code
98195
Vasilakaki, Sofia; Barbayianni, Efrosini; Leonis, Georgios et al. (2016) Development of a potent 2-oxoamide inhibitor of secreted phospholipase A2 guided by molecular docking calculations and molecular dynamics simulations. Bioorg Med Chem 24:1683-95
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Mouchlis, Varnavas D; Magrioti, Victoria; Barbayianni, Efrosini et al. (2011) Inhibition of secreted phospholipases A? by 2-oxoamides based on ?-amino acids: Synthesis, in vitro evaluation and molecular docking calculations. Bioorg Med Chem 19:735-43
Bollinger, James G; Ii, Hiromi; Sadilek, Martin et al. (2010) Improved method for the quantification of lysophospholipids including enol ether species by liquid chromatography-tandem mass spectrometry. J Lipid Res 51:440-7
Granata, Francescopaolo; Frattini, Annunziata; Loffredo, Stefania et al. (2010) Production of vascular endothelial growth factors from human lung macrophages induced by group IIA and group X secreted phospholipases A2. J Immunol 184:5232-41
Surrel, Fanny; Jemel, Ikram; Boilard, Eric et al. (2009) Group X phospholipase A2 stimulates the proliferation of colon cancer cells by producing various lipid mediators. Mol Pharmacol 76:778-90

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