Expression, purification and characterization of a human serine-dependent phospholipase A2 with high specificity for oxidized phospholipids and platelet activating factor

Author:

RICE Q. J. Simon1,SOUTHAN Christopher1,BOYD F. Helen2,TERRETT A. Jonathan1,MACPHEE H. Colin3,MOORES Kitty3,GLOGER S. Israel1,TEW G. David4

Affiliation:

1. Department of Biopharmaceutical Research U.K., SmithKline Beecham Pharmaceuticals, New Frontiers Science Park North, Harlow, Essex, CM19 5AW, U.K.

2. Department of Molecular Screening Technologies, SmithKline Beecham Pharmaceuticals, New Frontiers Science Park North, Harlow, Essex, CM19 5AW, U.K.

3. Vascular Biology, SmithKline Beecham Pharmaceuticals, New Frontiers Science Park North, Harlow, Essex, CM19 5AW, U.K.

4. Department of Molecular Screening Technologies, SmithKline Beecham Pharmaceuticals, 709 Swedeland Road, P.O. Box 1539, King of Prussia, PA 19406-0939, U.S.A.

Abstract

Using expressed sequence tag (EST) homology screening, a new human serine dependent phospholipase A2 (HSD-PLA2) was identified that has 40% amino acid identity with human low density lipoprotein-associated phospholipase A2 (LDL-PLA2). HSD-PLA2 has very recently been purified and cloned from brain tissue but named PAF-AH II. However, because the homology with LDL-PLA2 suggested a broader substrate specificity than simply platelet activating factor (PAF), we have further characterized this enzyme using baculovirus-expressed protein. The recombinant enzyme, which was purified 21-fold to homogeneity, had a molecular mass of 44 kDa and possessed a specific activity of 35 μmol min-1 mg-1 when assayed against PAF. Activity could also be measured using 1-decanoyl-2-(4-nitrophenylglutaryl) phosphate (DNGP) as substrate. Like LDL-PLA2, HSD-PLA2 was able to hydrolyse oxidatively modified phosphatidylcholines when supplemented to human LDL prior to copper-stimulated oxidation. A GXSXG motif evident from sequence information and inhibition of its activity by 3,4,dichloroisocoumarin, diisopropyl fluorophosphate (DFP) and diethyl p-nitrophenyl phosphate (DENP) confirm that the enzyme is serine dependent. Moreover, sequence comparison indicates the HSD-PLA2 probable active site triad positions are shared with LDL-PLA2 and a C. elegans homologue, suggesting that these sequences comprise members of a new enzyme family. Although clearly structurally related with similar substrate specificities further work reported here shows HSD-PLA2 and LDL-PLA2 to be different with respect to chromosomal localization and tissue distribution.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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