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心血管系统中的一氧化氮信号传导:对心力衰竭的影响。

Nitric oxide signaling in the cardiovascular system: implications for heart failure.

作者信息

Saraiva Roberto M, Hare Joshua M

机构信息

Cardiology Division, Department of Medicine, The Johns Hopkins Medical Institutions, Baltimore, Maryland, USA.

出版信息

Curr Opin Cardiol. 2006 May;21(3):221-8. doi: 10.1097/01.hco.0000221584.56372.dc.

Abstract

PURPOSE OF REVIEW

The role played by nitric oxide (NO) in cardiovascular physiology remains highly controversial. Following the discovery that NO is the prototypic endothelium-derived relaxing factor, this signaling molecule was implicated as possessing many other biological actions within the cardiovascular system, including effects on cardiac contraction, relaxation, and energetics. Here, we discuss new concepts regarding NO signaling, its effector pathways, and interactions between NO and the redox milieu within a framework of cardiac physiology and pathophysiology.

RECENT FINDINGS

Major recent insights that have advanced understanding of the mechanisms of NO bioactivity include the following. (1) NO acts in subcellular signaling compartments or modules. (2) S-nitrosylation (covalent modification of cysteine thiol moieties) of proteins represents a prototypic second messenger signaling mode in biologic systems. (3) Reactive oxygen and nitrogen species work together to facilitate signaling. (4) Disruption of physiologic signaling can occur by either increased formation of reactive oxygen species or decreased production of reactive nitrogen species, a situation of nitroso-redox imbalance.

SUMMARY

These insights, which challenge classically held views that NO acts as a freely diffusible molecule regulated primarily by concentration and exerting signaling primarily through cyclic GMP production, offer a new perspective on the pathophysiology and treatment of congestive heart failure.

摘要

综述目的

一氧化氮(NO)在心血管生理学中所起的作用仍极具争议。自发现NO是典型的内皮源性舒张因子以来,这种信号分子被认为在心血管系统中具有许多其他生物学作用,包括对心脏收缩、舒张和能量代谢的影响。在此,我们在心脏生理学和病理生理学的框架内,讨论有关NO信号传导、其效应途径以及NO与氧化还原环境之间相互作用的新概念。

最新发现

最近在推进对NO生物活性机制理解方面的主要见解如下。(1)NO在亚细胞信号区室或模块中发挥作用。(2)蛋白质的S-亚硝基化(半胱氨酸硫醇基团的共价修饰)代表生物系统中的一种典型第二信使信号传导模式。(3)活性氧和活性氮共同作用以促进信号传导。(4)活性氧形成增加或活性氮产生减少(一种亚硝基-氧化还原失衡的情况)均可导致生理信号传导中断。

总结

这些见解挑战了传统观念,即NO作为一种主要由浓度调节的自由扩散分子,主要通过环鸟苷酸的产生发挥信号传导作用,为充血性心力衰竭的病理生理学和治疗提供了新的视角。

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