完整血小板中对前列腺素的循环AMP转换反应:单独刺激和抑制前列腺素受体的证据。

B Ashby
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引用次数: 0

摘要

完整的人血小板响应稳定的前列腺素I2类似物iloprost形成环状AMP的时间过程形状随前列腺素浓度的变化而变化。在低浓度的伊洛前列素下,时间过程显示上升到一个平台,随后环AMP水平几乎没有下降。在高浓度的伊洛前列素下,环AMP的初始形成速度比低浓度时要快,但曲线显示环AMP水平明显随时间下降,低于低前列腺素浓度下的水平。相比之下,PGE1在所有前列腺素浓度下均使环AMP水平升高和显著下降,且曲线不交叉。在磷酸二酯酶抑制剂存在的情况下,伊洛前列素引起的环AMP水平的时间和浓度依赖性下降仍然很明显,这表明腺苷酸环化酶的抑制,而不是环AMP磷酸二酯酶的激活,是导致环AMP水平下降的原因。磷酸化血小板Ni并损害其功能的蛋白激酶C的激活剂消除了环AMP水平的时间依赖性下降,表明Ni可能参与了前列腺素诱导的腺苷酸环化酶的抑制。使用Barber等人(Adv. Cyc)导出的方程分析时间过程。Nuc。Res. 9, 507-516(1978))对腺苷酸环化酶激活和抑制的产率常数。由于活化和抑制速率常数对前列腺素依赖性的差异,我们提出血小板中腺苷酸环化酶的活化是由一个速效刺激受体介导的,而时间依赖性抑制(脱敏)是通过一个单独的、缓慢作用的抑制受体介导的。在iloprost(以及PGI2和PGD2)的情况下,刺激受体对前列腺素的亲和力大于推定的抑制性受体,而在PGE1(和PGE2)的情况下,其亲和力低于抑制性受体。前列腺素诱导的抑制可能通过Ni介导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyclic AMP turnover in response to prostaglandins in intact platelets: evidence for separate stimulatory and inhibitory prostaglandin receptors.

The shape of the time-course of cyclic AMP formation by intact human platelets in response to the stable prostaglandin I2 analogue iloprost varied with the concentration of the prostaglandin. At low concentrations of iloprost, the time-course showed a rise to a plateau with little subsequent decrease in cyclic AMP level. At high concentrations of iloprost, the initial rate of cyclic AMP formation was more rapid than at low concentrations, but the curves showed a marked time-dependent fall in cyclic AMP level to values below those observed at lower prostaglandin concentration. By contrast, PGE1 gave a rise and marked fall in cyclic AMP level at all concentrations of the prostaglandin and the curves did not cross. The time- and concentration-dependent fall in cyclic AMP level in response to iloprost was still apparent in the presence of phosphodiesterase inhibitors, indicating that inhibition of adenylate cyclase, rather than activation of cyclic AMP phosphodiesterases, was responsible for the fall in cyclic AMP level. Activators of protein kinase C, which phosphorylates platelet Ni and impairs its function, abolished the time-dependent fall in cyclic AMP level, indicating that Ni may be involved in prostaglandin-induced inhibition of adenylate cyclase. Time-courses were analyzed using an equation derived by Barber et al. (Adv. Cyc. Nuc. Res. 9, 507-516 (1978)) to yield rate constants for activation and inhibition of adenylate cyclase. Because of the difference in prostaglandin dependence of the activation and inhibition rate constants we propose that activation of adenylate cyclase in platelets is mediated by a rapid-acting stimulatory receptor, while time-dependent inhibition (desensitization) is mediated through a separate, slow-acting inhibitory receptor. The stimulatory receptor has an affinity for prostaglandin greater than the putative inhibitory receptor in the case of iloprost (as well as PGI2 and PGD2), and a lower affinity than the inhibitory receptor in the case of PGE1 (and PGE2). Prostaglandin-induced inhibition may be mediated through Ni.

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