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Arachidonic acid and calcium metabolism in rnelittin stimulated neutrophils

机译:雷尼替丁刺激的中性粒细胞中花生四烯酸和钙代谢

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摘要

Melittin, the predominant fraction of bee venom proteins, was studied in an experimental model of human neutrophil granulocytes to reveal its influence on eicosanoid release, metabolism and receptor function in relation to intracellular calcium metabolism. Melittin (2 μmol/l) was as potent as the calcium ionophore A23187 (10 μmol/l) for activation of 5-lipoxygenase, releasing arachidonate only from phosphatidyl-choline and phosphatidyl-ethanolamine of cellular membranes, as judged from the decreases in radioactivity by 15.4% and 30.5%, respectively. The mechanism responsible for the release of arachidonate from cellular membranes is closely coupled to cellular calcium metabolism, and melittin was found to promote calcium entry through receptor gated calcium channels, probably due to an activation of phospholipase A2. Furthermore, a down-regulation of leukotriene B4 receptors was seen. The maximal number of binding sites per cell was reduced from a median of 1520 to 950 with melittin (1 μmol/l). The study has revealed some factors important for the inflammatory mechanisms mediated by melittin.
机译:在人嗜中性粒细胞的实验模型中研究了蜂毒蛋白的主要成分Melittin,揭示了其对类二十烷酸释放,代谢和受体功能的影响与细胞内钙代谢有关。蜂毒素(2μmol/ l)与激活I-脂氧合酶的钙离子载体A23187(10μmol/ l)一样有效,仅从细胞膜的磷脂酰胆碱和磷脂酰乙醇胺中释放花生四烯酸盐,这从放射性的降低来判断分别增长15.4%和30.5%。负责从细胞膜释放花生四烯酸的机制与细胞钙代谢密切相关,并且发现蜂毒肽通过受体选通的钙通道促进钙进入,这可能是由于磷脂酶A2的激活所致。此外,发现白三烯B4受体的下调。蜂毒肽(1μmol/ l)将每个细胞的最大结合位点从1520的中位数降低到950。这项研究揭示了一些因素对蜂毒素介导的炎症机制很重要。

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