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Time-resolved characterization of cAMP/PKA-dependent signaling reveals that platelet inhibition is a concerted process involving multiple signaling pathways

机译:camp / pKa依赖性信号传导的时间分辨表征揭示了血小板抑制是涉及多种信号传导途径的协同过程

摘要

One of the most important physiological platelet inhibitors is endothelium-derived prostacyclin which stimulates the platelet cyclic adenosine monophosphate/protein kinase A (cAMP/PKA)-signaling cascade and inhibits virtually all platelet-activating key mechanisms. Using quantitative mass spectrometry, we analyzed time-resolved phosphorylation patterns in human platelets after treatment with iloprost, a stable prostacyclin analog, for 0, 10, 30, and 60 seconds to characterize key mediators of platelet inhibition and activation in 3 independent biological replicates. We quantified over 2700 different phosphorylated peptides of which 360 were significantly regulated upon stimulation. This comprehensive and time-resolved analysis indicates that platelet inhibition is a multi-pronged process involving different kinases and phosphatases as well as many previously unanticipated proteins and pathways.
机译:最重要的生理性血小板抑制剂之一是内皮源性前列环素,它能刺激血小板环状单磷酸腺苷/蛋白激酶A(cAMP / PKA)信号级联反应,并抑制几乎所有激活血小板的关键机制。使用定量质谱法,我们分析了用伊洛前列素(一种稳定的前列环素类似物)处理0、10、30和60秒后人血小板中时间分辨的磷酸化模式,以表征3个独立生物学复制中血小板抑制和激活的关键介体。我们量化了超过2700种不同的磷酸化肽,其中360种在刺激后受到了显着调节。这种全面且时间分辨的分析表明,血小板抑制是一个多管齐下的过程,涉及不同的激酶和磷酸酶以及许多先前未曾预料的蛋白质和途径。

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