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首页> 外文期刊>Cell stress & chaperones >Activation of Hsp90/NOS and increased NO generation does not impair mitochondrial respiratory chain by competitive binding at cytochrome C Oxidase in low oxygen concentrations
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Activation of Hsp90/NOS and increased NO generation does not impair mitochondrial respiratory chain by competitive binding at cytochrome C Oxidase in low oxygen concentrations

机译:Hsp90 / NOS的激活和NO生成的增加不会通过低氧浓度下细胞色素C氧化酶的竞争性结合而损害线粒体呼吸链

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摘要

Nitric oxide (NO) is known to regulate mitochondrial respiration, especially during metabolic stress and disease, by nitrosation of the mitochondrial electron transport chain (ETC) complexes (irreversible) and by a competitive binding at O2 binding site of cytochrome c oxidase (CcO) in complex IV (reversible). In this study, by using bovine aortic endothelial cells, we demonstrate that the inhibitory effect of endogenously generated NO by nitric oxide synthase (NOS) activation, by either NOS stimulators or association with heat shock protein 90 (Hsp90), is significant only at high prevailing pO2 through nitrosation of mitochondrial ETC complexes, but it does not inhibit the respiration by competitive binding at CcO at very low pO2. ETC complexes activity measurements confirmed that significant reduction in complex IV activity was noticed at higher pO2, but it was unaffected at low pO2 in these cells. This was further extended to heat-shocked cells, where NOS was activated by the induction/activation of (Hsp90) through heat shock at an elevated temperature of 42°C. From these results, we conclude that the entire attenuation of respiration by endogenous NO is due to irreversible inhibition by nitrosation of ETC complexes but not through reversible inhibition by competing with O2 binding at CcO at complex IV.
机译:已知一氧化氮(NO)通过线粒体电子传输链(ETC)复合物的亚硝化(不可逆)以及通过细胞色素C氧化酶(CcO)的O2结合位点的竞争性结合来调节线粒体呼吸,尤其是在代谢应激和疾病期间。在复杂IV中(可逆)。在这项研究中,通过使用牛主动脉内皮细胞,我们证明了NOS刺激物或与热休克蛋白90(Hsp90)结合产生的一氧化氮合酶(NOS)激活对内源性生成的NO的抑制作用仅在高线粒体ETC络合物的亚硝化作用使pO2占优势,但是在非常低的pO2下,它不会通过CcO的竞争性结合抑制呼吸作用。 ETC复合物活性测量结果证实,在较高的pO2下,复合物IV活性显着降低,但是在这些细胞中,在较低的pO2下,复合物IV活性并未受到影响。这进一步扩展到热激细胞,其中通过在42°C的高温下通过热激诱导(Hsp90)诱导/激活来激活NOS。根据这些结果,我们得出结论,内源性NO引起的整个呼吸减弱是由于ETC复合物的亚硝化而产生的不可逆抑制作用,而不是由于与复合物IV处CcO处的O2竞争竞争而产生的不可逆抑制作用。

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