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环磷酸腺苷/环鸟苷酸依赖信号通路在血小板中的新作用。

Novel roles of cAMP/cGMP-dependent signaling in platelets.

机构信息

UCD Conway Institute, UCD School of Medicine and Medical Science, University College Dublin, Belfield, Dublin, Ireland.

出版信息

J Thromb Haemost. 2012 Feb;10(2):167-76. doi: 10.1111/j.1538-7836.2011.04576.x.

Abstract

Endothelial prostacyclin and nitric oxide potently inhibit platelet functions. Prostacyclin and nitric oxide actions are mediated by platelet adenylyl and guanylyl cyclases, which synthesize cyclic AMP (cAMP) and cyclic GMP (cGMP), respectively. Cyclic nucleotides stimulate cAMP-dependent protein kinase (protein kinase A [PKA]I and PKAII) and cGMP-dependent protein kinase (protein kinase G [PKG]I) to phosphorylate a broad panel of substrate proteins. Substrate phosphorylation results in the inactivation of small G-proteins of the Ras and Rho families, inhibition of the release of Ca(2+) from intracellular stores, and modulation of actin cytoskeleton dynamics. Thus, PKA/PKG substrates translate prostacyclin and nitric oxide signals into a block of platelet adhesion, granule release, and aggregation. cAMP and cGMP are degraded by phosphodiesterases, which might restrict signaling to specific subcellular compartments. An emerging principle of cyclic nucleotide signaling in platelets is the high degree of interconnection between activating and cAMP/cGMP-dependent inhibitory signaling pathways at all levels, including cAMP/cGMP synthesis and breakdown, and PKA/PKG-mediated substrate phosphorylation. Furthermore, defects in cAMP/cGMP pathways might contribute to platelet hyperreactivity in cardiovascular disease. This article focuses on recent insights into the regulation of the cAMP/cGMP signaling network and on new targets of PKA and PKG in platelets.

摘要

内皮细胞合成的前列环素和一氧化氮能强力抑制血小板功能。前列环素和一氧化氮的作用是通过血小板的环腺苷酸(cAMP)和环鸟苷酸(cGMP)合成酶来介导的,分别合成 cAMP 和 cGMP。环核苷酸刺激 cAMP 依赖性蛋白激酶(蛋白激酶 A [PKA]I 和 PKAII)和 cGMP 依赖性蛋白激酶(蛋白激酶 G [PKG]I)磷酸化广泛的底物蛋白。底物磷酸化导致 Ras 和 Rho 家族的小 G 蛋白失活,抑制细胞内储存的 Ca(2+)释放,并调节肌动蛋白细胞骨架动力学。因此,PKA/PKG 底物将前列环素和一氧化氮信号转导为血小板黏附、颗粒释放和聚集的阻断。cAMP 和 cGMP 被磷酸二酯酶降解,这可能会将信号限制在特定的亚细胞隔室中。血小板中环核苷酸信号的一个新出现的原则是,在包括 cAMP/cGMP 合成和分解以及 PKA/PKG 介导的底物磷酸化在内的所有水平上,激活和 cAMP/cGMP 依赖性抑制信号通路之间具有高度的互联性。此外,cAMP/cGMP 途径的缺陷可能导致心血管疾病中血小板过度反应。本文重点介绍了 cAMP/cGMP 信号网络的调节以及 PKA 和 PKG 在血小板中的新靶点的最新见解。

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