首页> 美国卫生研究院文献>Journal of Clinical Biochemistry and Nutrition >Physiological Relevance of Antioxid/Redox Genes; Learning from Genetically Modified Animals: Physiological roles of NOX/NADPH oxidase the superoxide-generating enzyme
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Physiological Relevance of Antioxid/Redox Genes; Learning from Genetically Modified Animals: Physiological roles of NOX/NADPH oxidase the superoxide-generating enzyme

机译:抗氧化/氧化还原基因的生理相关性;向转基因动物学习:NOX / NADPH氧化酶(超氧化物生成酶)的生理作用

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摘要

NADPH oxidase is a superoxide (O2•−)-generating enzyme first identified in phagocytes, essential for their bactericidal activities. Later, in non-phagocytes, production of O2•− was also demonstrated in an NADPH-dependent manner. In the last decade, several non-phagocyte-type NADPH oxidases have been identified. The catalytic subunit of these oxidases, NOX, constitutes the NOX family. There are five homologs in the family, NOX1 to NOX5, and two related enzymes, DUOX1 and DUOX2. Transgenic or gene-disrupted mice of the NOX family have also been established. NOX/DUOX proteins possess distinct features in the dependency on other components for their enzymatic activities, tissue distributions, and physiological functions. This review summarized the characteristics of the NOX family proteins, especially focused on their functions clarified through studies using gene-modified mice.
机译:NADPH氧化酶是一种最早在吞噬细胞中发现的产生超氧化物(O2 •-)的酶,对它们的杀菌活性至关重要。后来,在非吞噬细胞中,也以NADPH依赖的方式证明了O2 •-的产生。在过去的十年中,已经鉴定出几种非吞噬细胞型NADPH氧化酶。这些氧化酶的催化亚基NOX构成了NOX家族。该家族中有五个同源物,即NOX1至NOX5,以及两个相关的酶DUOX1和DUOX2。还已经建立了NOX家族的转基因或基因破坏的小鼠。 NOX / DUOX蛋白在酶活性,组织分布和生理功能上对其他组分的依赖性具有独特的特征。这篇综述总结了NOX家族蛋白的特征,特别是侧重于通过使用基因修饰小鼠的研究阐明的功能。

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