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cGMP-dependent protein kinase protects cGMP from hydrolysis by phosphodiesterase-5.

机译:cGMP依赖性蛋白激酶可保护cGMP免受磷酸二酯酶5水解。

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摘要

The physiological effects of cGMP are largely determined by the activities of intracellular receptors, including cGMP-dependent protein kinase (PKG) and cGMP-binding cyclic nucleotide phosphodiesterases (PDEs), and the distribution of cGMP among these receptors dictates activity of the signalling pathway. In the present study, the effects of PKG-Ialpha or PKG-Ibeta on the rate of cGMP hydrolysis by the isolated PDE5 catalytic domain were examined. PKG-Ialpha strongly inhibited cGMP hydrolysis with an IC(50) value of 217 nM, which is similar to the physiological concentration of PKG in pig coronary artery reported previously. By contrast, PKG-Ibeta, which has lower affinity for cGMP than does PKG-Ialpha, inhibited cGMP hydrolysis with an IC(50) of approx. 1 microM. Inhibition by PKG-Ialpha was more effective than that by PKG-Ibeta, consistent with their relative affinities for cGMP. Autophosphorylation of PKGs increased their cGMP-binding affinities and their inhibitory effects on PDE5 hydrolysis of cGMP. Autophosphorylation of PKG-Ibeta increased its inhibitory potency on PDE5 hydrolysis of cGMP by 10-fold compared with a 2-fold increase upon autophosphorylation of PKG-Ialpha. The results indicate that cGMP bound to allosteric cGMP-binding sites of PKG is protected from hydrolysis by PDE5 and that persistent protection of cGMP by either non-phosphorylated or autophosphorylated PKGs may be a positive-feedback control to sustain cGMP signalling.
机译:cGMP的生理作用在很大程度上取决于细胞内受体的活性,包括cGMP依赖性蛋白激酶(PKG)和cGMP结合环核苷酸磷酸二酯酶(PDEs),这些受体之间cGMP的分布决定了信号通路的活性。在本研究中,检查了PKG-Ialpha或PKG-Ibeta对分离的PDE5催化域对cGMP水解速率的影响。 PKG-Ialpha强烈抑制cGMP水解,IC(50)值为217 nM,与先前报道的猪冠状动脉中PKG的生理浓度相似。相比之下,对cGMP的亲和力低于PKG-Ialpha的PKG-Ibeta抑制cGMP水解,其IC(50)约为50。 1微米PKG-Ialpha的抑制作用比PKG-Ibeta的抑制作用更有效,这与其对cGMP的相对亲和力一致。 PKG的自磷酸化增加了它们的cGMP结合亲和力和对cGMP的PDE5水解的抑制作用。 PKG-Ibeta的自磷酸化将其对cGMP的PDE5水解的抑制能力提高了10倍,而PKG-Ialpha的自磷酸化提高了2倍。结果表明,结合到PKG的变构cGMP结合位点上的cGMP被PDE5水解保护,而未磷酸化或自磷酸化的PKG对cGMP的持续保护可能是维持cGMP信号的正反馈控制。

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