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锌硫醇盐复合物的氧化及过氧亚硝酸盐对内皮型一氧化氮合酶的解偶联作用。

Oxidation of the zinc-thiolate complex and uncoupling of endothelial nitric oxide synthase by peroxynitrite.

作者信息

Zou Ming-Hui, Shi Chaomei, Cohen Richard A

机构信息

Vascular Biology Unit, Whitaker Cardiovascular Institute, Department of Medicine, Boston University School of Medicine, 650 Albany Street, Boston, MA 02118, USA.

出版信息

J Clin Invest. 2002 Mar;109(6):817-26. doi: 10.1172/JCI14442.

Abstract

Nitric oxide (NO) is produced by NO synthase (NOS) in many cells and plays important roles in the neuronal, muscular, cardiovascular, and immune systems. In various disease conditions, all three types of NOS (neuronal, inducible, and endothelial) are reported to generate oxidants through unknown mechanisms. We present here the first evidence that peroxynitrite (ONOO(-)) releases zinc from the zinc-thiolate cluster of endothelial NOS (eNOS) and presumably forms disulfide bonds between the monomers. As a result, disruption of the otherwise SDS-resistant eNOS dimers occurs under reducing conditions. eNOS catalytic activity is exquisitely sensitive to ONOO(-), which decreases NO synthesis and increases superoxide anion (O(2)(.-)) production by the enzyme. The reducing cofactor tetrahydrobiopterin is not oxidized, nor does it prevent oxidation of eNOS by the same low concentrations of OONO(-). Furthermore, eNOS derived from endothelial cells exposed to elevated glucose produces more O(2)(.-), and, like eNOS purified from diabetic LDL receptor-deficient mice, contains less zinc and fewer SDS-resistant dimers. Hence, eNOS exposure to oxidants including ONOO(-) causes increased enzymatic uncoupling and generation of O(2)(.-) in diabetes, contributing further to endothelial cell oxidant stress. Regulation of the zinc-thiolate center of NOS by ONOO(-) provides a novel mechanism for modulation of the enzyme function in disease.

摘要

一氧化氮(NO)由一氧化氮合酶(NOS)在许多细胞中产生,并在神经、肌肉、心血管和免疫系统中发挥重要作用。在各种疾病状态下,据报道所有三种类型的NOS(神经元型、诱导型和内皮型)都会通过未知机制产生氧化剂。我们在此首次证明,过氧亚硝酸盐(ONOO⁻)从内皮型NOS(eNOS)的硫醇锌簇中释放锌,并可能在单体之间形成二硫键。结果,在还原条件下原本抗十二烷基硫酸钠(SDS)的eNOS二聚体发生破坏。eNOS催化活性对ONOO⁻极为敏感,可以减少NO合成并增加该酶产生超氧阴离子(O₂⁻)。还原性辅助因子四氢生物蝶呤不会被氧化,也不能防止相同低浓度的ONOO⁻对eNOS的氧化。此外,暴露于高糖环境的内皮细胞衍生的eNOS会产生更多的O₂⁻,并且与从糖尿病低密度脂蛋白受体缺陷小鼠中纯化的eNOS一样,含锌量更少且抗SDS二聚体更少。因此,在糖尿病中,eNOS暴露于包括ONOO⁻在内的氧化剂会导致酶解偶联增加和O₂⁻生成增加,进一步加重内皮细胞氧化应激。ONOO⁻对NOS硫醇锌中心的调节为疾病中该酶功能的调节提供了一种新机制。

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