Stimulation of arachidonic acid release and eicosanoid biosynthesis in an interleukin 2-dependent T cell line.

R T Abraham, M M McKinney, C Forray, G D Shipley, B S Handwerger
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引用次数: 16

Abstract

Previous studies have provided pharmacologic evidence that T lymphocyte function may be regulated in part by the intracellular production of various arachidonic acid (AA) metabolites in response to cellular stimulation. However, the specific AA metabolic capabilities of homogeneous T cell populations have not been clearly defined. In the present studies, we have employed an accessory cell-free T cell line, HT-2, as a model system for the examination of stimulus-induced eicosanoid biosynthesis in T lymphocytes. HT-2 cells were biosynthetically labeled with [3H]-AA and challenged briefly with various agents that stimulate the hydrolytic release of AA from cellular phospholipids. The bee venom peptide melittin stimulated a profound AA release response in the cells and the concomitant synthesis of both cyclooxygenase (PGF2 alpha, PGE2 and PGD2) and lipoxygenase (5-,12-,15-HETE and possibly 5-,12-diHETE) metabolites of AA. The formation of PGs was blocked by 5 microM indomethacin, demonstrating that this cell line contains cyclooxygenase activity functionally similar to that described in macrophages and other cell types. The high activity of melittin in this system was shown to result largely from a synergy between the peptide itself and a persistent bee venom phospholipase A2 contaminant. However, experiments with melittin freed of detectable phospholipase A2 activity by heating, and with synthetic homopolymers of (L)-lysine and (L)-arginine demonstrated that HT-2 cells contain sufficient endogenous, stimulus-responsive phospholipase A2 to provide both the cyclooxygenase and lipoxygenase pathways of AA metabolism ith substrate. In contrast, Ca++ ionophores, which are known to stimulate AA release and metabolism in certain cell types, stimulated only AA release but no detectable eicosanoid biosynthesis in HT-2 cells. Experiments with exogenous bacterial phospholipase C suggested that this cell line can also generate free AA for eicosanoid biosynthesis from membrane-derived 1,2-diacylglycerol. These results indicate that multiple intracellular pathways of AA metabolism are present HT-2 cells, and that the stimulus-induced release of AA and the production of eicosanoid second messengers may result from activation of either phospholipase A2 or phospholipase C.

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在白细胞介素2依赖性T细胞系中刺激花生四烯酸释放和类二十烷生物合成。
先前的研究提供了药理学证据,表明T淋巴细胞的功能可能在一定程度上受细胞刺激下细胞内产生各种花生四烯酸代谢物的调节。然而,均质T细胞群体的特异性AA代谢能力尚未明确定义。在目前的研究中,我们采用了一种无辅助细胞的T细胞系HT-2作为模型系统来检测刺激诱导的T淋巴细胞中类二十烷类生物合成。HT-2细胞被生物合成标记为[3H]-AA,并被各种刺激细胞磷脂水解释放AA的药物短暂刺激。蜂毒肽melittin在细胞中刺激了AA的释放反应,并同时合成了AA的环加氧酶(PGF2 α, PGE2和PGD2)和脂加氧酶(5-,12-,15-HETE和可能的5-,12- dihete)代谢产物。5微米吲哚美辛阻断pg的形成,表明该细胞系具有与巨噬细胞和其他细胞类型相似的环加氧酶活性。蜂毒素在该系统中的高活性主要是由于肽本身与持久性蜂毒磷脂酶A2污染物之间的协同作用。然而,通过加热去除可检测到的磷脂酶A2活性的蜂毒素,以及合成(L)-赖氨酸和(L)-精氨酸的均聚物的实验表明,HT-2细胞含有足够的内源性刺激反应型磷脂酶A2,以提供AA与底物代谢的环加氧酶和脂加氧酶途径。相比之下,已知在某些细胞类型中刺激AA释放和代谢的ca++离子载体,在HT-2细胞中只刺激AA释放,而没有检测到类二十烷类生物合成。外源性细菌磷脂酶C实验表明,该细胞系也能产生游离AA,用于膜源性1,2-二酰基甘油的类二十烷生物合成。这些结果表明,HT-2细胞内存在多种AA代谢途径,刺激诱导的AA释放和二十烷类第二信使的产生可能是由磷脂酶A2或磷脂酶C激活引起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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