Blache D, Ciavatti M
INSERM U 63, Bron, France.
Biochim Biophys Acta. 1987 Oct 17;921(3):541-51. doi: 10.1016/0005-2760(87)90082-8.
To document further the involvement of external Ca2+ in the platelet-induced activation process, we have studied the arachidonate metabolism of intact washed rat platelets in the presence of different concentrations of Ca2+, Sr2+ or Ba2+. The thrombin-induced mobilization of radiolabeled arachidonate preincorporated into platelet phospholipids was followed as well as the subsequent formation of labeled cyclooxygenase and lipoxygenase products. Results indicate that upon thrombin stimulation (0.2 U/ml), the release of endogenous arachidonate and the formation of its metabolites are reduced by 50-90% only by omission of Ca2+ as compared to 1 mM Ca2+ in the suspending medium. At higher Ca2+ concentrations (5 mM), the arachidonate mobilization and metabolite formation are inhibited and the data are thus close to those obtained in the absence of Ca2+. In the presence of Sr2+ or Ba2+, the results indicate that these cations can substitute for Ca2+. As for Ca2+, an optimum concentration is found for Sr2+ and Ba2+ (3-5 mM), and higher concentrations inhibit the metabolism of arachidonic acid. As the above data might be compatible with the possible entry of Sr2+ and Ba2+ into platelets upon stimulation, we also studied the activity of a semi-purified preparation of phospholipase A2 from rat platelets. This activity was assayed (pH 9.2) using heat-denatured [3H]arachidonate-prelabeled phospholipids as substrate. The results show that this phospholipase A2 activity was strongly Ca2+-dependent. In addition, we found that unlike Mg2+, Sr2+ and Ba2+ are able to greatly enhance this activity. Relative efficiency (Vmax) was in the order Ca2+ greater than Sr2+ greater than Ba2+. Taken together, these findings suggest that external Ca2+ may play a major role in the regulation of rat platelet activity. Our interpretation is in line with the view that Sr2+ or Ba2+ could enter the platelet through a mechanism common to Ca2+ (a Ca2+ channel). Although direct evidence is awaited from the results of further studies which are in progress, it can reasonably be considered that Sr2+ or Ba2+ might cause platelet-induced activation mimicking a rise in the cytosolic Ca2+ and subsequent activation of Ca2+-dependent enzymes.
为进一步证明细胞外钙离子参与血小板诱导的激活过程,我们研究了在不同浓度的钙离子、锶离子或钡离子存在下,完整的洗涤大鼠血小板的花生四烯酸代谢。我们追踪了凝血酶诱导的预先掺入血小板磷脂中的放射性标记花生四烯酸的动员情况,以及随后标记的环氧化酶和脂氧合酶产物的形成。结果表明,在凝血酶刺激(0.2 U/ml)下,与悬浮介质中含有1 mM钙离子相比,仅通过去除钙离子,内源性花生四烯酸的释放及其代谢产物的形成就减少了50 - 90%。在较高的钙离子浓度(5 mM)下,花生四烯酸的动员和代谢产物的形成受到抑制,因此数据与在无钙离子情况下获得的数据接近。在锶离子或钡离子存在的情况下,结果表明这些阳离子可以替代钙离子。与钙离子一样,发现锶离子和钡离子存在一个最佳浓度(3 - 5 mM),更高的浓度会抑制花生四烯酸的代谢。由于上述数据可能与刺激时锶离子和钡离子可能进入血小板的情况相符,我们还研究了大鼠血小板半纯化磷脂酶A2制剂的活性。使用热变性的[3H]花生四烯酸预标记磷脂作为底物在pH 9.2下测定该活性。结果表明,这种磷脂酶A2活性强烈依赖于钙离子。此外,我们发现与镁离子不同,锶离子和钡离子能够极大地增强这种活性。相对效率(Vmax)的顺序为钙离子>锶离子>钡离子。综上所述,这些发现表明细胞外钙离子可能在大鼠血小板活性的调节中起主要作用。我们的解释与锶离子或钡离子可能通过与钙离子相同的机制(钙离子通道)进入血小板的观点一致。尽管正在进行的进一步研究结果尚待直接证据,但可以合理地认为锶离子或钡离子可能导致血小板诱导的激活,模拟细胞质钙离子的升高以及随后钙离子依赖性酶的激活。