Henry Y, Guissani A
INSERM U 350, Institut Curie (Section de Recherche), Orsay, France.
Cell Mol Life Sci. 1999 Jul;55(8-9):1003-14. doi: 10.1007/s000180050351.
Nitric oxide (NO) binds to metalloproteins, and particularly to hemoproteins in both ferrous and ferric states, with association and dissociation rate constants which cover many orders of magnitude. These chemical properties often provide clear explanations of enzymatic specificity. A basic and straightforward description of the versatility of NO chemistry and of the biological relevance of NO effects, as understood by biochemists as opposed to physiologists, is presented. NO effects on hemoglobin and soluble guanylate cyclase, two proteins directly involved in arterio-venous oxygen transport at quite different biological levels, are compared. NO and other N-oxides also play primary roles in several mitochondrial functions. Specific interactions with cytochrome c oxidase and cytochrome c are reviewed, and the effects of NO and other N-oxides on other iron-cluster-containing components of mitochondrial respiration are discussed.
一氧化氮(NO)与金属蛋白结合,特别是与亚铁和高铁状态的血红蛋白结合,其结合和解离速率常数涵盖多个数量级。这些化学性质常常为酶的特异性提供清晰的解释。本文给出了对NO化学多功能性以及NO效应的生物学相关性的基本而直接的描述,这是生物化学家而非生理学家所理解的。比较了NO对血红蛋白和可溶性鸟苷酸环化酶的影响,这两种蛋白质在截然不同的生物学水平上直接参与动静脉氧运输。NO和其他氮氧化物在几种线粒体功能中也起主要作用。综述了它们与细胞色素c氧化酶和细胞色素c的特异性相互作用,并讨论了NO和其他氮氧化物对线粒体呼吸中其他含铁簇成分的影响。