Inhibition of carboxylesterase activity of THP1 monocytes/macrophages and recombinant human carboxylesterase 1 by oxysterols and fatty acids |
| |
Authors: | J. Allen Crow Katye L. Herring Shuqi Xie Abdolsamad Borazjani Philip M. Potter Matthew K. Ross |
| |
Affiliation: | 1. Center for Environmental Health Sciences, Department of Basic Sciences, College of Veterinary Medicine, Mississippi State University, Matthew Ross, P.O. Box 6100, Mississippi State, MS 39762;2. Department of Molecular Pharmacology, St. Jude Children''s Research Hospital, 332 N. Lauderdale, Memphis, TN 38105 |
| |
Abstract: | Two major isoforms of human carboxylesterases (CEs) are found in metabolically active tissues, CES1 and CES2. These hydrolytic enzymes are involved in xenobiotic and endobiotic metabolism. CES1 is abundantly expressed in human liver and monocytes/macrophages, including the THP1 cell line; CES2 is expressed in liver but not in monocytes/macrophages. The cholesteryl ester hydrolysis activity in human macrophages has been attributed to CES1. Here, we report the direct inhibitory effects of several endogenous oxysterols and fatty acids on the CE activity of THP1 monocytes/macrophages and recombinant human CES1 and CES2. Using THP1 whole-cell lysates we found: (1) 27-hydroxycholesterol (27-HC) is a potent inhibitor of carboxylesterase activity (IC50 = 33 nM); (2) 24(S),25-epoxycholesterol had moderate inhibitory activity (IC50 = 8.1 μM); and (3) cholesterol, 7-ketocholesterol, 22(R)-hydroxycholesterol, 24(S)-hydroxycholesterol, and 25-hydroxycholesterol each had little inhibitory activity. 27-HC was a partially noncompetitive inhibitor of recombinant CES1 (Kiapp = 10 nM) and impaired intracellular CES1 activity following treatment of intact THP1 cells. In contrast, recombinant CES2 activity was not inhibited by 27-HC, suggesting isoform-selective inhibition by 27-HC. Furthermore, unsaturated fatty acids were better inhibitors of CES1 activity than saturated fatty acids, while CES2 activity was unaffected by any fatty acid. Arachidonic acid (AA) was the most potent fatty acid inhibitor of recombinant CES1 and acted by a noncompetitive mechanism (Kiapp = 1.7 μM); when not complexed to albumin, exogenous AA penetrated intact THP1 cells and inhibited CES1. Inhibition results are discussed in light of recent structural models for CES1 that describe ligand binding sites separate from the active site. In addition, oxysterol-mediated inhibition of CES1 activity was demonstrated by pretreatment of human liver homogenates or intact THP1 cells with exogenous 27-HC, which resulted in significantly reduced hydrolysis of the pyrethroid insecticide bioresmethrin, a CES1-specific xenobiotic substrate. Collectively, these findings suggest that CE activity of recombinant CES1, cell lysates, and intact cells can be impaired by naturally occurring lipids, which may compromise the ability of CES1 to both detoxify environmental pollutants and metabolize endogenous compounds in vivo. |
| |
Keywords: | AA, arachidonic acid ABCA1, ATP binding cassette transporter A1 ABCG1, ATP binding cassette transporter G1 apoA1, apolipoproteinA1 apoE, apolipoproteinE BSA, bovine serum albumin CE, carboxylesterase CES1, carboxylesterase 1 CES2, carboxylesterase 2 CEH, cholesteryl ester hydrolase CVD, cardiovascular disease CYP27A1, cholesterol 27-hydroxylase epoxycholesterol, 24(S),25-epoxycholesterol EYTA, 5,8,11,14-eicosatetraenoic acid IC50, concentration that inhibits 50% of control enzyme activity i, fractional inhibition Ki, dissociation constant for an inhibitor FA, fatty acid LXR, liver X receptor mRCT, macrophage reverse cholesterol transport 4-MUBA, 4-methylumbelliferyl acetate, 4-MUBO, 4-methylumbelliferyl oleate PO, paraoxon pNPV, p-nitrophenyl valerate PPAR, peroxisome proliferater-activated receptor SREBP-1c, sterol regulatory element&ndash binding protein-1c Vmax, maximum velocity 22(R)-HC, 22(R)-hydroxycholesterol 24(S)-HC, 24(S)-hydroxycholesterol 25-HC, 25-hydroxycholesterol 27-HC, 27-hydroxycholesterol |
本文献已被 ScienceDirect 等数据库收录! |
|