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蛋白质促进花生四烯酸从猪中性粒细胞的输出。

Protein-facilitated export of arachidonic acid from pig neutrophils.

作者信息

Krischer S M, Eisenmann M, Bock A, Mueller M J

机构信息

Institute of Pharmaceutical Biology, University of Munich, Karlstrasse 29, D-80333 Munich, Federal Republic of Germany.

出版信息

J Biol Chem. 1997 Apr 18;272(16):10601-7. doi: 10.1074/jbc.272.16.10601.

Abstract

Activated neutrophils release a variety of eicosanoids into the extracellular medium including arachidonic acid, 5-hydroxyicosatetraenoic acid, and leukotriene A4 and B4. In this study, the mechanism of arachidonic acid export has been examined using inside-out plasma membrane vesicles from pig polymorphonuclear leukocytes. Tritiated arachidonic acid associated rapidly with the membrane vesicles and crossed the membrane into the intravesicular space in a time-dependent and saturable manner. Half the maximal influx rate was measured at an arachidonate concentration of 5.7 microM, and a maximal influx velocity of 3.0 nmol/mg x min was determined at pH 6.8. Influx into vesicles was sensitive to a number of common anion transport inhibitors including pentachlorophenol, phloretin, diiodosalicylic acid, and quercetin as well as to the proteases trypsin and Pronase, suggesting a protein-dependent process. Furthermore, influx was temperature-sensitive with an energy of activation of 11.6 kcal/mol. Varying extravesicular concentration of ATP, Na+, or K+ had no impact on arachidonate influx, whereas changes in pH had a profound effect; optimum transport activity was observed at an extravesicular pH of 6, whereas raising the pH to 9.5 essentially abolished uptake. These results indicate and initially characterize a novel protein-facilitated arachidonate export mechanism in pig neutrophils.

摘要

活化的中性粒细胞会向细胞外介质释放多种类二十烷酸,包括花生四烯酸、5-羟基二十碳四烯酸、白三烯A4和B4。在本研究中,利用猪多形核白细胞的内向外质膜囊泡研究了花生四烯酸的输出机制。氚标记的花生四烯酸迅速与膜囊泡结合,并以时间依赖性和饱和性的方式穿过膜进入囊泡内空间。在花生四烯酸浓度为5.7 microM时测得最大流入速率的一半,在pH 6.8时确定最大流入速度为3.0 nmol/mg x min。囊泡内的流入对多种常见的阴离子转运抑制剂敏感,包括五氯苯酚、根皮素、二碘水杨酸和槲皮素,以及蛋白酶胰蛋白酶和链霉蛋白酶,这表明这是一个依赖蛋白质的过程。此外,流入对温度敏感,活化能为11.6 kcal/mol。改变囊泡外ATP、Na+或K+的浓度对花生四烯酸的流入没有影响,而pH值的变化则有深远影响;在囊泡外pH值为6时观察到最佳转运活性,而将pH值提高到9.5基本上消除了摄取。这些结果表明并初步表征了猪中性粒细胞中一种新型的蛋白质促进的花生四烯酸输出机制。

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