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Characterization of the Mechanism and Magnitude of Cytoglobin-mediated Nitrite Reduction and Nitric Oxide Generation under Anaerobic Conditions

机译:厌氧条件下细胞球蛋白介导的亚硝酸盐还原和一氧化氮生成的机理和幅度的表征

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摘要

Cytoglobin (Cygb) is a recently discovered cytoplasmic heme-binding globin. Although multiple hemeproteins have been reported to function as nitrite reductases in mammalian cells, it is unknown whether Cygb can also reduce nitrite to nitric oxide (NO). The mechanism, magnitude, and quantitative importance of Cygb-mediated nitrite reduction in tissues have not been reported. To investigate this pathway and its quantitative importance, EPR spectroscopy, spectrophotometric measurements, and chemiluminescence NO analyzer studies were performed. Under anaerobic conditions, mixing nitrite with ferrous-Cygb triggered NO formation that was trapped and detected using EPR spin trapping. Spectrophotometric studies revealed that nitrite binding to ferrous-Cygb is followed by formation of ferric-Cygb and NO. The kinetics and magnitude of Cygb-mediated NO formation were characterized. It was observed that Cygb-mediated NO generation increased linearly with the increase of nitrite concentration under anaerobic conditions. This Cygb-mediated NO production greatly increased with acidosis and near-anoxia as occur in ischemic conditions. With the addition of nitrite, soluble guanylyl cyclase activation was significantly higher in normal smooth muscle cells compared with Cygb knocked down cells with Cygb accounting for ∼40% of the activation in control cells and ∼60% in cells subjected to hypoxia for 48 h. Overall, these studies show that Cygb-mediated nitrite reduction can play an important role in NO generation and soluble guanylyl cyclase activation under hypoxic conditions, with this process regulated by pH, oxygen tension, nitrite concentration, and the redox state of the cells.
机译:细胞球蛋白(Cygb)是最近发现的胞质血红素结合球蛋白。尽管已报道多种血红蛋白在哺乳动物细胞中起亚硝酸盐还原酶的作用,但尚不清楚Cygb是否还能将亚硝酸盐还原为一氧化氮(NO)。 Cygb介导的亚硝酸盐还原在组织中的机制,大小和定量重要性尚未见报道。为了研究该途径及其定量重要性,进行了EPR光谱学,分光光度测量和化学发光NO分析仪研究。在厌氧条件下,将亚硝酸盐与Cygb亚铁混合会触发NO的形成,并使用EPR旋转捕获对其进行捕获和检测。分光光度法研究表明,亚硝酸盐与亚铁-Cygb结合后,会形成铁-Cygb和NO。表征了Cygb介导的NO形成的动力学和幅度。观察到在厌氧条件下,Cygb介导的NO生成随亚硝酸盐浓度的增加而线性增加。 Cygb介导的NO产生随着酸中毒和近乎缺氧而大大增加,如在缺血状态下发生的。加入亚硝酸盐后,正常平滑肌细胞中可溶性鸟嘌呤环化酶的活化程度比Cygb击倒的细胞要高,其中Cygb占对照细胞活化的40%左右,缺氧48小时细胞的活化率约为60%。总体而言,这些研究表明,Cygb介导的亚硝酸盐还原可以在缺氧条件下在NO生成和可溶性鸟苷酸环化酶活化中发挥重要作用,该过程受pH,氧张力,亚硝酸盐浓度和细胞的氧化还原状态调节。

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