首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Investigations into the mechanism of action of a novel nitric oxide generator on cellular respiration.
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Investigations into the mechanism of action of a novel nitric oxide generator on cellular respiration.

机译:研究新型一氧化氮发生器对细胞呼吸的作用机理。

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摘要

Nitric oxide may regulate cellular respiration by competition with oxygen at mitochondrial cytochrome oxidase. Using an astrocyte-derived cell line, we have compared the mechanism of action of the nitric oxide-generating compound Roussin's black salt with that of sodium nitroprusside on cellular oxygen consumption. Intense light exposure induced the release of large quantities of nitric oxide from both of the donor compounds. However, in room light only Roussin's black salt generated low levels of the radical. Simultaneous measurement of oxygen consumption and of nitric oxide production demonstrated that sodium nitroprusside only had inhibitory actions when exposed to intense light (nitric oxide release), whereas Roussin's black salt had inhibitory actions in room light. Extracellular haemoglobin did not prevent the inhibition of respiration rate induced by Roussin's black salt even though stimulation of nitric oxide release on light exposure was markedly reduced. Preincubation of cells with Roussin's black salt and subsequent measurement of levels of light-liberated nitric oxide demonstrated that the compound was rapidly internalised. The uptake of sodium nitroprusside was minimal. These data suggest that, in contrast to sodium nitroprusside, the cellular internalisation of Roussin's black salt allows site-directed nitric oxide release and very effective inhibition of cellular respiration.
机译:一氧化氮可以通过与线粒体细胞色素氧化酶中的氧竞争来调节细胞的呼吸。使用星形胶质细胞衍生的细胞系,我们比较了产生一氧化氮的化合物鲁辛黑盐和硝普钠对细胞耗氧量的作用机理。强烈的曝光会导致两种供体化合物释放出大量的一氧化氮。但是,在室内光线下,只有鲁辛的黑色盐会产生少量的自由基。同时测量耗氧量和一氧化氮的产生量表明,硝普钠只有在强光(一氧化氮释放)下才具有抑制作用,而鲁辛的黑盐在室内光下则具有抑制作用。即使明显减少了暴露于一氧化氮的刺激,细胞外血红蛋白也不能阻止鲁辛黑盐诱导的呼吸速率抑制。用Roussin的黑盐对细胞进行预培养,然后测量光释放的一氧化氮的水平,表明该化合物被快速内在化。硝普钠的摄入量很小。这些数据表明,与硝普钠不同,鲁辛黑盐的细胞内在化允许定点释放一氧化氮并非常有效地抑制细胞呼吸。

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