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NITRITE REDUCTASE ACTIVITY OF NON-SYMBIOTIC HEMOGLOBINS FROM ARABIDOPSIS THALIANA

机译:非共生血红蛋白的来自拟南芥亚硝酸还原酶活性

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摘要

Plant non-symbiotic hemoglobins possess hexa-coordinate heme geometry similar to the heme protein neuroglobin. We recently discovered that deoxygenated neuroglobin converts nitrite to nitric oxide (NO), an important signaling molecule involved in many processes in plants. We sought to determine whether Arabidopsis thaliana non-symbiotic hemoglobins class 1 and 2 (AHb1 and AHb2) might function as nitrite reductases. We found that the reaction of nitrite with deoxygenated AHb1 and AHb2 generates NO gas and iron-nitrosyl-hemoglobin species. The bimolecular rate constants for nitrite reduction to NO are 19.8 ± 3.2 and 4.9 ± 0.2 M−1s−1, at pH = 7.4 and 25°C, respectively. We determined the pH dependence of these bimolecular rate constants and found a linear correlation with the concentration of protons, indicating the requirement for one proton in the reaction. Release of free NO gas during reaction in anoxic and hypoxic (2% oxygen) conditions was confirmed by chemiluminescence detection. These results demonstrate that deoxygenated AHb1 and AHb2 reduce nitrite to form NO via a mechanism analogous to that observed for hemoglobin, myoglobin and neuroglobin. Our findings suggest that during severe hypoxia and in the anaerobic plant roots, especially in water submerged species, non-symbiotic hemoglobins provide a viable pathway for NO generation via nitrite reduction.
机译:植物非共生血红蛋白具有类似于血红素蛋白神经球蛋白的六曲坐标血红素几何形状。我们最近发现脱氧神经胶蛋白将亚硝酸盐转化为一氧化氮(NO),这是植物中许多过程中的重要信号传导分子。我们试图判断拟南芥是否非共生血红蛋白1和2(AHB1和AHB2)可能用作亚硝酸盐还原酶。我们发现亚硝酸盐与脱氧AHB1和AHB2的反应产生没有气体和铁亚硝基血红蛋白物种。用于亚硝酸盐降低至No的双分子率常数分别为19.8±3.2和4.9±0.2M -1 / sup> s -1 -1 / sup>,分别为pH = 7.4和25°C。我们确定了这些双分子率常数的pH依赖性,并发现与质子浓度的线性相关性,表明在反应中的一个质子的要求。通过化学发光检测证实了在缺氧和缺氧(2%氧)条件下的反应过程中无气体的释放。这些结果表明,脱氧AHB1和AHB2通过类似于血红蛋白,肌红蛋白和神经球蛋白的机制来减少亚硝酸盐以形成否。我们的研究结果表明,在严重的缺氧和厌氧植物根部,特别是水浸物质中,非共生血红蛋白提供了通过亚硝酸盐的不产生的可行途径。

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