Nitric oxide and nitric oxide synthase isoforms in the normal, hypertrophic, and failing heart

被引:3
作者
Soban Umar
Arnoud van der Laarse
机构
[1] Leiden University Medical Center,Department of Cardiology
来源
Molecular and Cellular Biochemistry | 2010年 / 333卷
关键词
Nitric oxide; Hypertrophy; Nitric oxide synthase; Heart failure;
D O I
暂无
中图分类号
学科分类号
摘要
Nitric oxide (NO) produced in the heart by nitric oxide synthase (NOS) is a highly reactive signaling molecule and an important modulator of myocardial function. NOS catalyzes the conversion of l-arginine to l-citrulline and NO but under particular circumstances reactive oxygen species (ROS) can be formed instead of NO (uncoupling). In the heart, three NOS isoforms are present: neuronal NOS (nNOS, NOS1) and endothelial NOS (eNOS, NOS3) are constitutively present enzymes in distinct subcellular locations within cardiomyocytes, whereas inducible NOS (iNOS, NOS2) is absent in the healthy heart, but its expression is induced by pro-inflammatory mediators. In the tissue, NO has two main effects: (i) NO stimulates the activity of guanylate cyclase, leading to cGMP generation and activation of protein kinase G, and (ii) NO nitrosylates tyrosine and thiol-groups of cysteine in proteins. Upon nitrosylation, proteins may change their properties. Changes in (i) NOS expression and activity, (ii) subcellular compartmentation of NOS activity, and (iii) the occurrence of uncoupling may lead to multiple NO-induced effects, some of which being particularly evident during myocardial overload as occurs during aortic constriction and myocardial infarction. Many of these NO-induced effects are considered to be cardioprotective but particularly if NOS becomes uncoupled, formation of ROS in combination with a low NO bioavailability predisposes for cardiac damage.
引用
收藏
页码:191 / 201
页数:10
相关论文
共 351 条
[31]  
Xu L(2001)Modulation of mouse cardiac function in vivo by eNOS and ANP Circulation 104 3097-3102
[32]  
Eu JP(2005)Nitric oxide regulation of myocardial contractility and calcium cycling: independent impact of neuronal and endothelial nitric oxide synthases FEBS Lett 579 3159-3163
[33]  
Meissner G(2001)Regulation of endothelial nitric oxide synthase: location, location, location Nat Cell Biol 3 867-873
[34]  
Liu L(1999)Nitric oxide regulates the heart by spatial confinement of nitric oxide synthase isoforms Cardiovasc Res 43 549-561
[35]  
Hausladen A(1994)Myocardial contractile function and heart rate in mice with myocyte-specific overexpression of endothelial nitric oxide synthase Am J Physiol Cell Physiol 267 C1405-C1413
[36]  
Zeng M(1991)Direct interaction between the reductase domain of the endothelial nitric oxide synthase and the ryanodine receptor Arterioscler Thromb 11 254-260
[37]  
Liu L(1990)Endogenous nitric oxide mechanisms mediate the stretch dependence of Ca Proc Natl Acad Sci USA 87 5193-5197
[38]  
Yan Y(1990) release in cardiomyocytes Biochem Biophys Res Commun 171 474-479
[39]  
Zeng M(1999)Review. Interactions among ACE, kinins and NO Circ Res 85 829-840
[40]  
Dimmeler S(2002)Inhibition of smooth muscle cell growth by nitric oxide and activation of cAMP-dependent protein kinase by cGMP J Clin Invest 109 735-743