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The physiology of nitric oxide: control and consequences

机译:一氧化氮的生理:控制和后果

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摘要

Since its recognition as an endothelium-derived relaxing factor, the control and consequences of nitric oxide (NO) production has been investigated intensely. NO is not simply a vasodilator or regulator of smooth muscle tone but is a potent anti-platelet agent, neuromodulator and regulator of gene expression. This article reviews the mechanisms (intracellular Ca~(2+), phosphorylation and protein-protein interaction) that regulate the activity of each of the NO synthase isoforms and describes the physiology of NO in the circulation, kidney, skeletal muscle as well as in endocrine, immune and nervous systems.
机译:作为一个endothelium-derived以来认可放松的因素,控制和后果一氧化氮(NO)的生产强烈的调查。血管舒张药或平滑肌张力调节器但是是一种有效的抗血小板剂,神经调质和监管机构的基因表达。本文回顾了机制(细胞内Ca ~(2 +)磷酸化蛋白质相互作用),调节活动每个没有合酶的亚型描述了生理学的没有循环、肾、骨骼肌以及在内分泌、免疫系统和神经系统。

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