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Mathematical Modelling of Nitric Oxide/Cyclic GMP/Cyclic AMP Signalling in Platelets

机译:血小板中一氧化氮/循环GMP /循环AMP信号的数学建模

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摘要

Platelet activation contributes to normal haemostasis but also to pathologic conditions like stroke and cardiac infarction. Signalling by cGMP and cAMP inhibit platelet activation and are therefore attractive targets for thrombosis prevention. However, extensive cross-talk between the cGMP and cAMP signalling pathways in multiple tissues complicates the selective targeting of their activities. We have used mathematical modelling based on experimental data from the literature to quantify the steady state behaviour of nitric oxide (NO)/cGMP/cAMP signalling in platelets. The analysis provides an assessment of NO-induced cGMP synthesis and PKG activation as well as cGMP-mediated cAMP and PKA activation though modulation of phosphodiesterase (PDE2 and 3) activities. Both one- and two-compartment models of platelet cyclic nucleotide signalling are presented. The models provide new insight for understanding how NO signalling to cGMP and indirectly cAMP, can inhibit platelet shape-change, the initial step of platelet activation. Only the two-compartment models could account for the experimental observation that NO-mediated PKA activation can occur when the bulk platelet cAMP level is unchanged. The models revealed also a potential for hierarchical interplay between the different platelet phosphodiesterases. Specifically, the models predict, unexpectedly, a strong effect of pharmacological inhibitors of cGMP-specific PDE5 on the cGMP/cAMP cross-talk. This may explain the successful use of weak PDE5-inhibitors, such as dipyridamole, in anti-platelet therapy. In conclusion, increased NO signalling or PDE5 inhibition are attractive ways of increasing cGMP-cAMP cross-talk selectively in platelets.
机译:血小板活化有助于正常止血,也有助于中风和心脏梗死等病理状况。 cGMP和cAMP发出的信号抑制血小板活化,因此是预防血栓形成的诱人靶标。然而,在多个组织中的cGMP和cAMP信号通路之间的广泛串扰使它们的活性的选择性靶向复杂化。我们已经使用了基于文献实验数据的数学模型来量化一氧化氮(NO)/ cGMP / cAMP信号在血小板中的稳态行为。该分析通过调节磷酸二酯酶(PDE2和3)的活性,评估了NO诱导的cGMP合成和PKG活化以及cGMP介导的cAMP和PKA活化。提出了血小板环核苷酸信号传导的一室和两室模型。该模型为了解cGMP和间接cAMP的NO信号如何抑制血小板形状变化(血小板活化的初始步骤)提供了新的见解。只有两室模型可以解释实验观察,即当批量血小板cAMP水平保持不变时,NO介导的PKA活化会发生。该模型还揭示了不同的血小板磷酸二酯酶之间的层次相互作用的潜力。具体而言,这些模型意外地预测了cGMP特异性PDE5的药理抑制剂对cGMP / cAMP串扰的强大影响。这可能解释了弱PDE5抑制剂(例如双嘧达莫)在抗血小板治疗中的成功应用。总之,增加NO信号传递或PDE5抑制是选择性增加血小板中cGMP-cAMP串扰的诱人方式。

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