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Functional relationship between cyclic AMP-dependent protein phosphorylation and platelet inhibition.

机译:环状AMP依赖性蛋白磷酸化与血小板抑制之间的功能关系。

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摘要

Exposure of human platelets to prostacyclin (PGI2), iloprost or prostaglandin E1 (PGE1) elicits the cyclic AMP-dependent phosphorylation of proteins of 22, 24, 30, 39, 50, 60 and 250 kDa (P22, P24 etc.). P22 was recently identified as rap 1B, a ras-like protein, and P24 was shown to be the beta-chain of glycoprotein Ib. We found that cyclic AMP-dependent phosphorylation of all proteins except P22 was maximal 1 min after exposure of platelets to PGI2, iloprost or PGE1; maximal phosphorylation of P22 occurred after 45 min of incubation. Inhibition of thrombin-induced platelet activation required only a 30 s incubation with PGI2 or iloprost; at this time phosphorylation of P22 was only slightly increased. Although at maximal concentrations PGI2 was more potent than PGE1 in inhibiting thrombin-induced platelet activation, no difference in the degree and the kinetics of cyclic AMP-dependent protein phosphorylation was found. Platelets that had been preincubated and washed in the presence of PGE1 and later resuspended in the absence of PGE1 responded fully to activation by thrombin despite maximal phosphorylation of P22 and P24. Furthermore, addition of PGI2 to PGE1-washed platelets prevented thrombin-induced platelet activation, but did not evoke further phosphorylation of P22 or P24. Phosphorylation of P39 and P50 correlated better with PGI2-induced inhibition of platelet activation. In experiments in which PGE1-induced inhibition of platelet activation was overcome by the addition of thrombin, no dephosphorylation of proteins phosphorylated by cyclic AMP-dependent kinases was observed. These experiments indicate that: (a) phosphorylation of rap 1B and glycoprotein Ib is not related to platelet inhibition by cyclic AMP; (b) phosphorylation of other proteins such as P39 and P50 probably plays a role in mediating cyclic AMP-dependent platelet inhibition; (c) reactions other than cyclic AMP-dependent protein phosphorylation may participate in platelet inhibition by cyclic AMP.
机译:人血小板暴露于前列环素(PGI2),伊洛前列素或前列腺素E1(PGE1)会引起22、24、30、39、50、60和250 kDa(P22,P24等)的蛋白质循环AMP依赖性磷酸化。 P22最近被鉴定为Rap 1B,一种ras样蛋白,P24被证明是糖蛋白Ib的β链。我们发现,血小板暴露于PGI2,伊洛前列素或PGE1后,除P22外,所有蛋白质的环状AMP依赖性磷酸化作用最大1分钟。孵育45分钟后,P22发生最大磷酸化。抑制凝血酶诱导的血小板活化仅需与PGI2或伊洛前列素一起孵育30 s即可。此时,P22的磷酸化仅轻微增加。尽管在最大浓度下,PGI2在抑制凝血酶诱导的血小板活化方面比PGE1更有效,但是在环AMP依赖性蛋白磷酸化的程度和动力学方面没有发现差异。尽管P22和P24的磷酸化程度最高,但已在PGE1存在下进行预温育和洗涤,然后在没有PGE1存在下重悬的血小板完全响应了凝血酶的激活。此外,向经PGE1洗涤的血小板中添加PGI2可以防止凝血酶诱导的血小板活化,但不会引起P22或P24的进一步磷酸化。 P39和P50的磷酸化与PGI2诱导的血小板活化抑制作用更好地相关。在通过添加凝血酶克服了PGE1诱导的血小板活化抑制作用的实验中,未观察到由环AMP依赖性激酶磷酸化的蛋白质的去磷酸化作用。这些实验表明:(a)rap 1B和糖蛋白Ib的磷酸化与环AMP抑制血小板无关; (b)其他蛋白质(例如P39和P50)的磷酸化可能在介导环AMP依赖性血小板抑制中起作用; (c)除环AMP依赖性蛋白磷酸化以外的其他反应可能参与环AMP的血小板抑制作用。

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