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Redox Regulation of the NPR1-TGA1 System of Arabidopsis thaliana by Nitric Oxide

机译:一氧化氮对拟南芥NPR1-TGA1系统的氧化还原调节作用

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The role of reactive oxygen and nitrogen species in local and systemic defense reactions is well documented. NPR1 and TGA1 are key redox-controlled regulators of systemic acquired resistance in plants. NPR1 monomers interact with the reduced form of TGA1, which targets the activation sequence-1 (as-1) element of the promoter region of defense proteins. Here, we report the effect of the physiological nitric oxide donor S-nitrosoglutathione on the NPR1/TGA1 regulation system in Arabidopsis thaliana. Using the biotin switch method, we demonstrate that both NPR1 and TGA1 are S-nitrosylated after treatment with S-nitrosoglutathione. Mass spectrometry analyses revealed that the Cys residues 260 and 266 of TGA1 are S-nitrosylated and S-glutathionylated even at GSNO concentrations in the low micromolar range. Furthermore, we showed that S-nitrosoglutathione protects TGA1 from oxygen-mediated modifications and enhances the DNA binding activity of TGA1 to the as-1 element in the presence of NPR1. In addition, we observed that the translocation of NPR1 into the nucleus is promoted by nitric oxide. Taken together, our results suggest that nitric oxide is a redox regulator of the NPR1/TGA1 system and that they underline the importance of nitric oxide in the plant defense response.
机译:活性氧和氮物种在局部和全身防御反应中的作用已得到充分证明。 NPR1和TGA1是植物体内获得性抗性的关键氧化还原控制调节剂。 NPR1单体与TGA1的还原形式相互作用,后者靶向防御蛋白启动子区域的激活序列1(as-1)元素。在这里,我们报告的生理氮氧化物供体S-亚硝基谷胱甘肽对拟南芥NPR1 / TGA1调节系统的影响。使用生物素转换法,我们证明NPR1和TGA1都是S-亚硝基谷胱甘肽处理后S-亚硝基化的。质谱分析显示,即使在低微摩尔范围内的GSNO浓度下,TGA1的Cys残基260和266也被S-亚硝基化和S-谷胱甘肽化。此外,我们表明S-亚硝基谷胱甘肽保护TGA1免受氧介导的修饰,并在NPR1存在的情况下增强TGA1与as-1元素的DNA结合活性。此外,我们观察到一氧化氮促进了NPR1向核内的转运。两者合计,我们的结果表明,一氧化氮是NPR1 / TGA1系统的氧化还原调节剂,它们强调了一氧化氮在植物防御反应中的重要性。

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