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血栓烷诱导人血小板中磷脂酸的形成。与受体占据及胞质游离钙变化的关系。

Thromboxane-induced phosphatidate formation in human platelets. Relationship to receptor occupancy and to changes in cytosolic free calcium.

作者信息

Pollock W K, Armstrong R A, Brydon L J, Jones R L, MacIntyre D E

出版信息

Biochem J. 1984 May 1;219(3):833-42. doi: 10.1042/bj2190833.

Abstract

The inter-relationships between receptor occupancy, inositol phospholipid metabolism and elevation of cytosolic free Ca2+ in thromboxane A2-induced human platelet activation were investigated by using the stable thromboxane A2 mimetic, 9,11-epoxymethanoprostaglandin H2, and the thromboxane A2 receptor antagonist, EPO45. 9,11-Epoxymethanoprostaglandin H2 stimulated platelet phosphatidylinositol metabolism as indicated by the rapid accumulation of [32P]phosphatidate and later accumulation of [32P]phosphatidylinositol in platelets pre-labelled with [32P]Pi. These effects of 9,11-epoxymethanoprostaglandin H2 were concentration-dependent and half-maximal [32P]phosphatidate formation occurred at an agonist concentration of 54 +/- 8 nM. With platelets labelled with the fluorescent Ca2+ indicator quin 2, resting cytosolic free Ca2+ was 86 +/- 12 nM. 9,11-Epoxymethanoprostaglandin H2 induced a rapid, concentration-dependent elevation of cytosolic free Ca2+ to a maximum of 300-700 nM. Half-maximal stimulation was observed at an agonist concentration of 80 +/- 23 nM. The thromboxane A2 receptor antagonist EPO45 selectively inhibited 9,11-epoxymethanoprostaglandin H2-induced [32P]phosphatidate formation and elevation of cytosolic free Ca2+, indicating that both events are sequelae of receptor occupancy. Human platelets contain a single class of stereospecific, saturable, high affinity (KD = 70 +/- 13 nM) binding sites for 9,11-epoxymethano[3H]prostaglandin H2. The concentration-response curve for receptor occupancy (9,11-epoxymethano-[3H]prostaglandin H2 binding) is similar to that for 9,11-epoxymethanoprostaglandin H2-induced [32P]phosphatidate formation and for elevation of cytosolic free Ca2+. These observations indicate that human platelet thromboxane A2 receptor occupation is closely linked to inositol phospholipid metabolism and to elevation of cytosolic free Ca2+. Both such events may be necessary for thromboxane A2-induced human platelet activation.

摘要

利用稳定的血栓素A2类似物9,11-环氧甲撑前列腺素H2和血栓素A2受体拮抗剂EPO45,研究了在血栓素A2诱导的人血小板活化过程中,受体占有率、肌醇磷脂代谢和胞浆游离Ca2+升高之间的相互关系。9,11-环氧甲撑前列腺素H2刺激血小板磷脂酰肌醇代谢,这表现为在用[32P]Pi预标记的血小板中,[32P]磷脂酸快速积累,随后[32P]磷脂酰肌醇积累。9,11-环氧甲撑前列腺素H2的这些作用呈浓度依赖性,半最大[32P]磷脂酸形成发生在激动剂浓度为54±8 nM时。对于用荧光Ca2+指示剂喹啉2标记的血小板,静息胞浆游离Ca2+为86±12 nM。9,11-环氧甲撑前列腺素H2诱导胞浆游离Ca2+迅速、浓度依赖性升高,最高可达300 - 700 nM。在激动剂浓度为80±23 nM时观察到半最大刺激。血栓素A2受体拮抗剂EPO45选择性抑制9,11-环氧甲撑前列腺素H2诱导的[32P]磷脂酸形成和胞浆游离Ca2+升高,表明这两个事件都是受体占有率的后果。人血小板含有一类对9,11-环氧甲撑[3H]前列腺素H2具有立体特异性、可饱和、高亲和力(KD = 70±13 nM)的结合位点。受体占有率(9,11-环氧甲撑-[3H]前列腺素H2结合)的浓度-反应曲线与9,11-环氧甲撑前列腺素H2诱导的[32P]磷脂酸形成和胞浆游离Ca2+升高的曲线相似。这些观察结果表明,人血小板血栓素A2受体的占据与肌醇磷脂代谢和胞浆游离Ca2+升高密切相关。这两个事件对于血栓素A2诱导的人血小板活化可能都是必需的。

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