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The chemistry of nitrosative stress induced by nitric oxide and reactive nitrogen oxide species. Putting perspective on stressful biological situations

机译:一氧化氮和反应性一氧化氮物质诱发的亚硝化应力的化学性质。透视紧张的生物状况

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This review addresses many of the chemical aspects of nitrosative stress mediated by N_(2)O_(3). From a cellular perspective, N_(2)O_(3) and the resulting reactive nitrogen oxide species target specific motifs such as thiols, lysine active sites, and zinc fingers and is dependant upon both the rates of production as well as consumption of NO and must be taken into account in order to access the nitrosative environment. Since production and consumption are integral parts of N_(2)O_(3) generation, we predict that nitrosative stress occurs under specific conditions, such as chronic inflammation. In contrast to conditions of stress, nitrosative chemistry may also provide cellular protection through the regulation of critical signaling pathways. Therefore, a careful evaluation of the chemistry of nitrosation based upon specific experimental conditions may provide a better understanding of how the subtle balance between oxidative and nitrosative stress may be involved in the etiology and control of various disease processes.
机译:这篇评论解决了由N_(2)O_(3)介导的亚硝化胁迫的许多化学方面。从细胞的角度看,N_(2)O_(3)和生成的反应性氮氧化物物种的目标是特定的基序,例如硫醇,赖氨酸活性位点和锌指,并且取决于NO和NO的产生率和消耗率为了进入亚硝化环境必须考虑在内。由于生产和消费是N_(2)O_(3)世代的组成部分,因此我们预测亚硝化应激会在特定条件下发生,例如慢性炎症。与压力条件相反,亚硝化化学也可以通过调节关键信号通路来提供细胞保护。因此,基于特定的实验条件仔细评估亚硝化的化学性质,可以更好地理解氧化应激和亚硝化应激之间的微妙平衡如何与各种疾病过程的病因和控制有关。

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