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血小板活化因子在中性粒细胞中的代谢命运

Metabolic fate of platelet-activating factor in neutrophils.

作者信息

Chilton F H, O'Flaherty J T, Ellis J M, Swendsen C L, Wykle R L

出版信息

J Biol Chem. 1983 May 25;258(10):6357-61.

PMID:6853486
Abstract

1-O-[3H]Alkyl-2-acetyl-sn-glycero-3-phosphocholine (1-O-[3H]alkyl-2-acetyl-GPC) incubated with rabbit polymorphonuclear leukocytes was metabolized to 1-O-alkyl-2-acyl-GPC containing long chain groups at the 2 position. Within 5 min, 60% of the total label added to the cell suspension was found in the 1-O-[3H]alkyl-2-acyl-GPC. At earlier time points, 1-O-[3H]alkyl-2-lyso-GPC was present. No metabolites were detected that would indicate the ether bond had been cleaved or the polar head group had been altered by the cells. At subaggregating and subdegranulating concentrations of labeled 1-O-[3H]alkyl-2-acyl-GPC, the same pattern of product formation was observed. Furthermore, when 1-O-[3H]alkyl-2-lyso-GPC was added to the cells, it was taken up and acylated in the same manner as that from 1-O-alkyl-2-acetyl-GPC. The nature of the long chain acyl residues incorporated into the 2 position was then examined by argentation chromatography and high performance liquid chromatography. Argentation chromatography of 1-O-[3H]alkyl-2-acyl-3-acetylglycerols obtained from 1-O-[3H]alkyl-2-acyl-GPC after acetolysis indicated that mono-, di-, and tetraenoic fatty acids were the predominant molecular species being incorporated into the 2 position of the molecule (18, 55, and 18%, respectively). Furthermore, high performance liquid chromatographic analysis using synthetic 1-O-alkyl-2-acyl-GPC standards indicated that three fatty acids, linoleic, arachidonic, and oleic (50, 15, and 12%, respectively), were the major chains being incorporated into the 1-O-hexadecyl-linked species. Analysis of 1-O-[3H]alkyl-2-acyl-GPC derived from exogenously added 1-O-[3H]alkyl-2-lyso-GPC revealed the same distribution of acyl groups linked to the 2 position. The findings are consistent with a pathway in which two enzymatic activities are responsible for the metabolism of exogenous platelet-activating factor in the rabbit neutrophils: one that hydrolyzes the acetyl residue (acetylhydrolase) and another that transfers a fatty acyl chain to the 1-O-alkyl-2-lyso-GPC formed (possibly acyl-CoA:1-O-alkyl-2-lyso-GPC acyltransferase). These events appear to play an important role in inactivating this potentially lethal phospholipid.

摘要

与兔多形核白细胞一起孵育的1-O-[³H]烷基-2-乙酰基-sn-甘油-3-磷酸胆碱(1-O-[³H]烷基-2-乙酰基-GPC)被代谢为在2位含有长链基团的1-O-烷基-2-酰基-GPC。在5分钟内,添加到细胞悬液中的总标记物的60%存在于1-O-[³H]烷基-2-酰基-GPC中。在更早的时间点,存在1-O-[³H]烷基-2-溶血-GPC。未检测到表明醚键已被裂解或极性头部基团已被细胞改变的代谢产物。在标记的1-O-[³H]烷基-2-酰基-GPC的亚聚集和亚脱颗粒浓度下,观察到相同的产物形成模式。此外,当将1-O-[³H]烷基-2-溶血-GPC添加到细胞中时,它以与1-O-烷基-2-乙酰基-GPC相同的方式被摄取并酰化。然后通过银染色谱法和高效液相色谱法检查掺入2位的长链酰基残基的性质。对乙酰解后从1-O-[³H]烷基-2-酰基-GPC获得的1-O-[³H]烷基-2-酰基-3-乙酰甘油进行银染色谱分析表明,单烯、二烯和四烯脂肪酸是掺入分子2位的主要分子种类(分别为18%、55%和18%)。此外,使用合成的1-O-烷基-2-酰基-GPC标准品进行的高效液相色谱分析表明,三种脂肪酸,亚油酸、花生四烯酸和油酸(分别为50%、15%和12%)是掺入1-O-十六烷基连接物种的主要链。对源自外源添加的1-O-[³H]烷基-2-溶血-GPC的1-O-[³H]烷基-2-酰基-GPC的分析揭示了与2位相连的酰基的相同分布。这些发现与一种途径一致,在该途径中,两种酶活性负责兔中性粒细胞中外源血小板活化因子的代谢:一种水解乙酰基残基(乙酰水解酶),另一种将脂肪酰链转移到形成的1-O-烷基-2-溶血-GPC上(可能是酰基辅酶A:1-O-烷基-2-溶血-GPC酰基转移酶)。这些事件似乎在使这种潜在致命的磷脂失活中起重要作用。

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