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一氧化氮合酶调节位点。环磷酸腺苷依赖性蛋白激酶、蛋白激酶C和钙/钙调蛋白蛋白激酶的磷酸化作用;黄素和钙调蛋白结合位点的鉴定。

Nitric oxide synthase regulatory sites. Phosphorylation by cyclic AMP-dependent protein kinase, protein kinase C, and calcium/calmodulin protein kinase; identification of flavin and calmodulin binding sites.

作者信息

Bredt D S, Ferris C D, Snyder S H

机构信息

Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

J Biol Chem. 1992 Jun 5;267(16):10976-81.

PMID:1375933
Abstract

Nitric oxide (NO) is an important molecular messenger accounting for endothelial-derived relaxing activity in blood vessels, mediating cytotoxic actions of macrophages, and functioning as a neurotransmitter in the brain and periphery. NO synthase (NOS) from brain has been purified to homogeneity and molecularly cloned. We now report that NOS is stoichiometrically phosphorylated by cAMP dependent protein kinase, protein kinase C, and calcium/calmodulin-dependent protein kinase, with each kinase phosphorylating a different serine site on NOS. Activation of PKC in transfected cells reduces NOS enzyme activity by approximately 77% in intact cells and by 50% in protein homogenates from these cells. Utilizing fluorescence spectroscopy we find that purified monomer NOS contains 1 molar equivalent of both FMN and FAD. This stoichiometry is supported by enzymatic digestion of the flavins with phosphodiesterase, and titration of the FMN with a specific FMN binding protein. We demonstrate that purified NOS is labeled by a photoaffinity derivative of calmodulin. These recognition sites on NOS provide multiple means for regulation of NO levels and "cross-talk" between second messenger systems.

摘要

一氧化氮(NO)是一种重要的分子信使,它在血管中负责内皮细胞衍生的舒张活性,介导巨噬细胞的细胞毒性作用,并在大脑和外周发挥神经递质的功能。来自大脑的一氧化氮合酶(NOS)已被纯化至同质并进行了分子克隆。我们现在报告,NOS被环磷酸腺苷依赖性蛋白激酶、蛋白激酶C和钙/钙调蛋白依赖性蛋白激酶按化学计量磷酸化,每种激酶磷酸化NOS上不同的丝氨酸位点。转染细胞中蛋白激酶C的激活使完整细胞中的NOS酶活性降低约77%,使这些细胞的蛋白质匀浆中的NOS酶活性降低50%。利用荧光光谱法,我们发现纯化的单体NOS含有1摩尔当量的黄素单核苷酸(FMN)和黄素腺嘌呤二核苷酸(FAD)。用磷酸二酯酶对黄素进行酶促消化以及用特异性FMN结合蛋白对FMN进行滴定均支持这种化学计量关系。我们证明纯化的NOS被钙调蛋白的光亲和衍生物标记。NOS上的这些识别位点为调节NO水平以及第二信使系统之间的“相互作用”提供了多种方式。

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