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Post-Translational Modification of Proteins Mediated by Nitro-Fatty Acids in Plants: Nitroalkylation

机译:植物中由硝基脂肪酸介导的蛋白质的翻译后修饰:硝基烷基化

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Nitrate fatty acids (NO 2 -FAs) are considered reactive lipid species derived from the non-enzymatic oxidation of polyunsaturated fatty acids by nitric oxide (NO) and related species. Nitrate fatty acids are powerful biological electrophiles which can react with biological nucleophiles such as glutathione and certain protein–amino acid residues. The adduction of NO 2 -FAs to protein targets generates a reversible post-translational modification called nitroalkylation. In different animal and human systems, NO 2 -FAs, such as nitro-oleic acid (NO 2 -OA) and conjugated nitro-linoleic acid (NO 2 -cLA), have cytoprotective and anti-inflammatory influences in a broad spectrum of pathologies by modulating various intracellular pathways. However, little knowledge on these molecules in the plant kingdom exists. The presence of NO 2 -OA and NO 2 -cLA in olives and extra-virgin olive oil and nitro-linolenic acid (NO 2 -Ln) in Arabidopsis thaliana has recently been detected. Specifically, NO 2 -Ln acts as a signaling molecule during seed and plant progression and beneath abiotic stress events. It can also release NO and modulate the expression of genes associated with antioxidant responses. Nevertheless, the repercussions of nitroalkylation on plant proteins are still poorly known. In this review, we demonstrate the existence of endogenous nitroalkylation and its effect on the in vitro activity of the antioxidant protein ascorbate peroxidase.
机译:硝酸盐脂肪酸(NO 2 -FAs)被认为是由一氧化氮(NO)和相关物质对多不饱和脂肪酸进行非酶氧化的反应性脂质。硝酸脂肪酸是强大的生物亲电子试剂,可以与生物亲核试剂如谷胱甘肽和某些蛋白质-氨基酸残基反应。 NO 2 -FAs加到蛋白质靶标上会产生可逆的翻译后修饰,称为硝基烷基化。在不同的动物和人类系统中,NO 2 -FA(例如硝基油酸(NO 2 -OA)和共轭硝基亚油酸(NO 2 -cLA))在广泛的病理学中具有细胞保护和抗炎作用通过调节各种细胞内途径。但是,关于植物界中这些分子的知识很少。最近已经检测到橄榄中存在NO 2 -OA和NO 2 -cLA以及拟南芥中存在特级初榨橄榄油和硝基亚麻酸(NO 2 -Ln)。具体而言,NO 2 -Ln在种子和植物进程以及非生物胁迫事件下充当信号分子。它还可以释放NO并调节与抗氧化反应相关的基因的表达。尽管如此,硝基烷基化对植物蛋白的影响仍然知之甚少。在这篇综述中,我们证明了内源性硝基烷基化的存在及其对抗氧化剂抗坏血酸过氧化物酶体外活性的影响。

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