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1-酰基-2-乙酰基-sn-甘油-3-磷酸胆碱在人中性粒细胞中的代谢

Metabolism of 1-acyl-2-acetyl-sn-glycero-3-phosphocholine in the human neutrophil.

作者信息

Triggiani M, D'Souza D M, Chilton F H

机构信息

Johns Hopkins Asthma and Allergy Center, Johns Hopkins University School of Medicine, Baltimore, Maryland 21224.

出版信息

J Biol Chem. 1991 Apr 15;266(11):6928-35.

PMID:2016306
Abstract

The biosynthesis of 1-acyl-2-acetyl-sn-glycero-3-phosphocholine (1-acyl-2-acetyl-GPC) together with that of 1-alkyl-2-acetyl-GPC (platelet-activating factor) has been demonstrated in a variety of inflammatory cells and tissues. It has been hypothesized that the relative proportion of these phospholipids produced upon cell activation may be influenced by their rates of catabolism. We studied the catabolism of 1-acyl-2-acetyl-GPC in resting and activated human neutrophils and compared it to that of 1-alkyl-2-acetyl-GPC. Neutrophils rapidly catabolize both 1-alkyl-2-acetyl-GPC and 1-acyl-2-acetyl-GPC; however, the rate of catabolism of 1-acyl-2-acetyl-GPC is approximately 2-fold higher than that of 1-alkyl-2-acetyl-GPC. In addition, most of 1-acyl-2-acetyl-GPC is catabolized through a pathway different from that of 1-alkyl-2-acetyl-GPC. The main step in the catabolism of 1-acyl-2-acetyl-GPC is the removal of the long chain at the sn-1 position; the long chain residue is subsequently incorporated either into triglycerides or into phosphatidylcholine. The 1-lyso-2-acetyl-GPC formed in this reaction is then further degraded to glycerophosphocholine, choline, or phosphocholine. 1-Acyl-2-acetyl-GPC is also catabolized, to a lesser extent, through deacetylation at the sn-2 position and reacylation with a long chain fatty acid. Stimulation of neutrophils by A23187 results in a higher rate of catabolism of 1-acyl-2-acetyl-GPC by increasing both the removal of the long chain at the sn-1 position and the deacetylation-reacylation at the sn-2 position. In a broken cell preparation, the cytosolic fraction of the neutrophil was shown to contain an enzyme activity which cleaved the sn-1 position of 1-acyl-2-acetyl-GPC and 1-acyl-2-lyso-GPC but not of 1,2-diacyl-GPC. Taken together, these data demonstrate that the human neutrophil is able to catabolize 1-acyl-2-acetyl-GPC in a manner both quantitatively and qualitatively different from that of platelet-activating factor. The differential catabolism may regulate the relative proportion of these two bioactive phospholipids in the neutrophil.

摘要

在多种炎症细胞和组织中已证实1-酰基-2-乙酰基-sn-甘油-3-磷酸胆碱(1-酰基-2-乙酰基-GPC)与1-烷基-2-乙酰基-GPC(血小板活化因子)的生物合成。据推测,细胞活化时产生的这些磷脂的相对比例可能受其分解代谢速率的影响。我们研究了静息和活化的人中性粒细胞中1-酰基-2-乙酰基-GPC的分解代谢,并将其与1-烷基-2-乙酰基-GPC的分解代谢进行比较。中性粒细胞能快速分解代谢1-烷基-2-乙酰基-GPC和1-酰基-2-乙酰基-GPC;然而,1-酰基-2-乙酰基-GPC的分解代谢速率约为1-烷基-2-乙酰基-GPC的2倍。此外,大部分1-酰基-2-乙酰基-GPC通过与1-烷基-2-乙酰基-GPC不同的途径进行分解代谢。1-酰基-2-乙酰基-GPC分解代谢的主要步骤是去除sn-1位的长链;长链残基随后要么并入甘油三酯,要么并入磷脂酰胆碱。此反应中形成的1-溶血-2-乙酰基-GPC随后进一步降解为甘油磷酸胆碱、胆碱或磷酸胆碱。1-酰基-2-乙酰基-GPC在较小程度上也通过sn-2位的脱乙酰作用和与长链脂肪酸的再酰化作用进行分解代谢。A23187刺激中性粒细胞会通过增加sn-1位长链的去除以及sn-2位的脱乙酰-再酰化作用,导致1-酰基-2-乙酰基-GPC的分解代谢速率更高。在破碎细胞制剂中,中性粒细胞的胞质部分显示含有一种酶活性,该活性可切割1-酰基-2-乙酰基-GPC和1-酰基-2-溶血-GPC的sn-1位,但不能切割1,2-二酰基-GPC的sn-1位。综上所述,这些数据表明人中性粒细胞能够以在数量和质量上与血小板活化因子不同的方式分解代谢1-酰基-2-乙酰基-GPC。这种差异分解代谢可能调节中性粒细胞中这两种生物活性磷脂的相对比例。

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