内皮细胞内钙的内流调节生物活性类血管素的形成。

H J Kruse, B Grünberg, W Siess, P C Weber
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引用次数: 27

摘要

使用受体介导的钙进入阻滞剂SK&F 96365来评估钙内流对生物活性内皮类前列腺素和内皮源性放松因子(EDRF)形成的贡献。SK&F 96365抑制组胺刺激的钙进入人脐静脉内皮细胞,但不能从细胞内储存的钙排出,这是通过荧光光谱法测定的fura-2负载细胞内钙浓度的变化。同时,SK&F 96365抑制组胺诱导的内皮细胞6-酮前列腺素F1 α和血栓素B2的合成,且呈剂量依赖性。为了评估前列腺环素和EDRF对血小板内皮形成的功能意义,我们在内皮细胞与血小板共孵生实验中分析了cAMP-和cgmp依赖性的两种血小板蛋白rap1B和50-kD血管扩张剂刺激磷酸化蛋白(VASP)。组胺刺激的内皮细胞释放的类自身蛋白引起血小板中rap1B和VASP的磷酸化,吲哚美辛或ng -单甲基- l-精氨酸仅部分抑制,而SK&F 96365几乎完全抑制。伴随血栓素A2的内皮释放对血小板蛋白的蛋白激酶C和钙依赖性磷酸化没有影响。结果表明,sk&f96365阻断受体介导的钙进入可显著减少内皮细胞中生物活性前列环素和EDRF的释放。因此,钙内流而非细胞内储存的钙释放在内皮细胞中受受体刺激的前列环素和EDRF的形成和释放中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of biologically active autacoids is regulated by calcium influx in endothelial cells.

The blocker of receptor-mediated calcium entry SK&F 96365 was used to evaluate the contribution of calcium influx to the formation of biologically active endothelial prostanoids and endothelium-derived relaxing factor (EDRF). SK&F 96365 inhibited histamine-stimulated calcium entry into human umbilical vein endothelial cells but not its discharge from intracellular stores as determined spectrofluorometrically by changes of intracellular calcium concentration in fura-2-loaded cells. Concordantly, SK&F 96365 inhibited histamine-induced endothelial synthesis of 6-keto-prostaglandin F1 alpha and thromboxane B2 in a dose-dependent manner. To assess the functional significance of endothelial formation of prostacyclin and EDRF to platelets, the cAMP- and cGMP-dependent phosphorylation of two platelet proteins, rap1B and a 50-kD vasodilator-stimulated phosphoprotein (VASP), was analyzed in coincubation experiments of endothelial cells with platelets. Autacoids released by histamine-stimulated endothelial cells caused the phosphorylation of rap1B and VASP in platelets, which was only partly inhibited by either indomethacin or NG-monomethyl-L-arginine but was almost completely suppressed by SK&F 96365. The concomitant endothelial release of thromboxane A2 had no effect on protein kinase C- and calcium-dependent phosphorylation of platelet proteins. The results demonstrate that blockade of receptor-mediated calcium entry by SK&F 96365 markedly reduced the release of biologically active prostacyclin and EDRF from endothelial cells. Thus, calcium influx but not calcium release from intracellular stores plays a critical role in the receptor-stimulated formation and liberation of prostacyclin and EDRF in endothelial cells.

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