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cGMP对磷酸二酯酶5(PDE5)的直接激活:在一氧化氮/环磷酸鸟苷(NO/cGMP)信号通路中的长期效应

Direct activation of PDE5 by cGMP: long-term effects within NO/cGMP signaling.

作者信息

Mullershausen Florian, Friebe Andreas, Feil Robert, Thompson W Joseph, Hofmann Franz, Koesling Doris

机构信息

Abteilung für Pharmakologie und Toxikologie, Medizinische Fakultät, Ruhr-Universität Bochum, MA N1/43, Universitaetsstr. 150, 44780 Bochum, Germany.

出版信息

J Cell Biol. 2003 Mar 3;160(5):719-27. doi: 10.1083/jcb.200211041. Epub 2003 Feb 25.

Abstract

In platelets, the nitric oxide (NO)-induced cGMP response is indicative of a highly regulated interplay of cGMP formation and cGMP degradation. Recently, we showed that within the NO-induced cGMP response in human platelets, activation and phosphorylation of phosphodiesterase type 5 (PDE5) occurred. Here, we identify cyclic GMP-dependent protein kinase I as the kinase responsible for the NO-induced PDE5 phosphorylation. However, we demonstrate that cGMP can directly activate PDE5 without phosphorylation in platelet cytosol, most likely via binding to the regulatory GAF domains. The reversal of activation was slow, and was not completed after 60 min. Phosphorylation enhanced the cGMP-induced activation, allowing it to occur at lower cGMP concentrations. Also, in intact platelets, a sustained NO-induced activation of PDE5 for as long as 60 min was detected. Finally, the long-term desensitization of the cGMP response induced by a low NO concentration reveals the physiological relevance of the PDE5 activation within NO/cGMP signaling. In sum, we suggest NO-induced activation and phosphorylation of PDE5 as the mechanism for a long-lasting negative feedback loop shaping the cGMP response in human platelets in order to adapt to the amount of NO available.

摘要

在血小板中,一氧化氮(NO)诱导的cGMP反应表明cGMP生成与cGMP降解之间存在高度调节的相互作用。最近,我们发现,在人血小板的NO诱导的cGMP反应中,5型磷酸二酯酶(PDE5)发生了激活和磷酸化。在此,我们确定环鸟苷酸依赖性蛋白激酶I是负责NO诱导的PDE5磷酸化的激酶。然而,我们证明,在血小板胞质溶胶中,cGMP可直接激活PDE5而无需磷酸化,最有可能是通过与调节性GAF结构域结合。激活的逆转缓慢,60分钟后未完成。磷酸化增强了cGMP诱导的激活,使其能在较低的cGMP浓度下发生。此外,在完整的血小板中,检测到NO诱导的PDE5持续激活长达60分钟。最后,低浓度NO诱导的cGMP反应的长期脱敏揭示了PDE5激活在NO/cGMP信号传导中的生理相关性。总之,我们认为NO诱导的PDE5激活和磷酸化是形成人血小板中cGMP反应的持久负反馈回路的机制,以便适应可用的NO量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e4a/2173359/11bc751c9aeb/200211041f1.jpg

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