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Role of lecithin-cholesterol acyltransferase in the metabolism of oxidized phospholipids in plasma: studies with platelet-activating factor-acetyl hydrolase-deficient plasma
Authors:Veedamali S. Subramanian  Jaya Goyal  Masao Miwa  Junko Sugatami  Masaki Akiyama  Ming Liu  Papasani V. Subbaiah
Affiliation:1. Departments of Medicine and Biochemistry, Rush Medical College, 1653 West Congress Parkway, Chicago, IL 60612, USA;2. Department of Pharmaco-Biochemistry, University of Shizuoka, Shizuoka, Japan
Abstract:To determine the relative importance of platelet-activating factor-acetylhydrolase (PAF-AH) and lecithin-cholesterol acyltransferase (LCAT) in the hydrolysis of oxidized phosphatidylcholines (OXPCs) to lyso-phosphatidylcholine (lyso-PC), we studied the formation and metabolism of OXPCs in the plasma of normal and PAF-AH-deficient subjects. Whereas the loss of PC following oxidation was similar in the deficient and normal plasmas, the formation of lyso-PC was significantly lower, and the accumulation of OXPC was higher in the deficient plasma. Isolated LDL from the PAF-AH-deficient subjects was more susceptible to oxidation, and stimulated adhesion molecule synthesis in endothelial cells, more than the normal LDL. Oxidation of 16:0-[1-14C]-18:2 PC, equilibrated with plasma PC, resulted in the accumulation of labeled short- and long-chain OXPCs, in addition to the labeled aqueous products. The formation of the aqueous products decreased by 80%, and the accumulation of short-chain OXPC increased by 110% in the deficient plasma, compared to the normal plasma, showing that PAF-AH is predominantly involved in the hydrolysis of the truncated OXPCs. Labeled sn-2-acyl group from the long-chain OXPC was not only hydrolyzed to free fatty acid, but was preferentially transferred to diacylglycerol, in both the normal and deficient plasmas. In contrast, the acyl group from unoxidized PC was transferred only to cholesterol, showing that the specificity of LCAT is altered by OXPC. It is concluded that, while PAF-AH carries out the hydrolysis of mainly truncated OXPCs, LCAT hydrolyzes and transesterifies the long-chain OXPCs.
Keywords:Lecithin-cholesterol acyltransferase  Phospholipase A activity  Transacylation  Paraoxonase  Adhesion molecule  CE, cholesteryl ester  DFP, diisopropylfluorophosphate  DG, diacylglycerol  EGM, endothelial cell growth medium  FC, free cholesterol  FCS, fetal calf serum  FFA, free fatty acid  HDL, high-density lipoproteins  HUVEC, human umbilical vein endothelial cells  ICAM-1, intercellular adhesion molecule-1  LAT, lysolecithin acyltransferase  LDL, low-density lipoproteins  LCAT, lecithin-cholesterol acyltransferase  ME, mercaptoethanol  MDA, malondialdehyde  PAF-AH, platelet-activating factor-acetylhydrolase  PC, phosphatidylcholine  PON, paraoxonase  OXPC, oxidized phosphatidylcholine  TBARS, thiobarbituric acid reactive substances  TNF-α, tumor necrosis factor-α  TG, triacylglycerol
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