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Sphingolipid metabolism during human platelet activation.

机译:人血小板活化过程中的鞘脂代谢。

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摘要

Thrombin activation of human platelets causes release of sphingosine-1-phosphate from platelets and an increase in sphingosine levels. Sphingosine-1-phosphate is also known to potentiate platelet aggregation. Thus, these sphingolipids may serve as second messengers during platelet activation making it possible that another sphingolipid, ceramide, might play a role in platelet function. Platelets are known to contain sphingomyelinase activity and hydrolysis of sphingomyelin by this enzyme yields phosphocholine and ceramide. Since ceramide is thought to exert its effects through regulation of protein kinases and phosphatases, both of which are involved in platelet function, it is possible that ceramide produced during platelet activation could be involved in regulating signal transduction events. To investigate this possibility, potential changes in levels of ceramide and sphingomyelin in resting and thrombin-activated platelets have been evaluated. Thin-layer chromatographic analysis of the total mass or of radiolabeled (14C-palmitate or 14C-serine) pools of ceramide and sphingomyelin did not reveal any significant changes in the concentrations of either of these molecules during platelet activation. In addition, activation of platelets labeled with [14C-choline]-sphingomyelin did not lead to production of 14C-phosphocholine, suggesting that platelet activation did not cause sphingomyelinase to hydrolyze the [14C-choline]-sphingomyelin. Taken together, our results suggest that ceramide does not serve as a second messenger during platelet aggregation.
机译:人血小板的凝血酶活化导致血小板释放1-磷酸鞘氨醇,并增加鞘氨醇水平。还已知1-磷酸鞘氨醇可增强血小板聚集。因此,这些鞘脂可在血小板活化期间充当第二信使,使得另一种鞘脂神经酰胺可能在血小板功能中起作用。已知血小板具有鞘磷脂酶活性,并且鞘磷脂被该酶水解产生磷酸胆碱和神经酰胺。由于神经酰胺被认为通过调节蛋白激酶和磷酸酶发挥作用,而这两者均参与血小板功能,因此血小板活化过程中产生的神经酰胺可能参与信号转导事件的调节。为了研究这种可能性,已经评估了静息和凝血酶激活的血小板中神经酰胺和鞘磷脂水平的潜在变化。对神经酰胺和鞘磷脂的总质量或放射性标记的(14C-棕榈酸酯或14C-丝氨酸)库进行薄层色谱分析,在血小板活化过程中,这两种分子的浓度均未发现任何显着变化。另外,用[14C-胆碱]-鞘磷脂标记的血小板的活化不会导致14C-磷酸胆碱的产生,这表明血小板活化不引起鞘磷脂酶水解[14C-胆碱]-鞘磷脂。综上所述,我们的结果表明神经酰胺在血小板聚集过程中不能作为第二信使。

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