Begara-Morales Juan C, Sánchez-Calvo Beatriz, Chaki Mounira, Valderrama Raquel, Mata-Pérez Capilla, Padilla María N, Corpas Francisco J, Barroso Juan B
Group of Biochemistry and Cell Signaling in Nitric Oxide, Department of Experimental Biology, Center for Advanced Studies in Olive Grove and Olive Oils, Faculty of Experimental Sciences, University of Jaén Jaén, Spain.
Group of Antioxidants, Free Radicals and Nitric Oxide in Biotechnology, Food and Agriculture, Department of Biochemistry, Cellular and Molecular Biology of Plants, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas Granada, Spain.
Front Plant Sci. 2016 Feb 16;7:152. doi: 10.3389/fpls.2016.00152. eCollection 2016.
Nitric oxide (NO) is a biological messenger that orchestrates a plethora of plant functions, mainly through post-translational modifications (PTMs) such as S-nitrosylation or tyrosine nitration. In plants, hundreds of proteins have been identified as potential targets of these NO-PTMs under physiological and stress conditions indicating the relevance of NO in plant-signaling mechanisms. Among these NO protein targets, there are different antioxidant enzymes involved in the control of reactive oxygen species (ROS), such as H2O2, which is also a signal molecule. This highlights the close relationship between ROS/NO signaling pathways. The major plant antioxidant enzymes, including catalase, superoxide dismutases (SODs) peroxiredoxins (Prx) and all the enzymatic components of the ascorbate-glutathione (Asa-GSH) cycle, have been shown to be modulated to different degrees by NO-PTMs. This mini-review will update the recent knowledge concerning the interaction of NO with these antioxidant enzymes, with a special focus on the components of the Asa-GSH cycle and their physiological relevance.
一氧化氮(NO)是一种生物信使,主要通过翻译后修饰(PTMs)如S-亚硝基化或酪氨酸硝化来协调众多植物功能。在植物中,数百种蛋白质已被确定为在生理和胁迫条件下这些NO-PTMs的潜在靶点,这表明NO在植物信号传导机制中的相关性。在这些NO蛋白靶点中,有不同的抗氧化酶参与活性氧(ROS)的控制,如H2O2,它也是一种信号分子。这突出了ROS/NO信号通路之间的密切关系。主要的植物抗氧化酶,包括过氧化氢酶、超氧化物歧化酶(SODs)、过氧化物酶(Prx)以及抗坏血酸-谷胱甘肽(Asa-GSH)循环的所有酶组分,已被证明在不同程度上受到NO-PTMs的调节。本综述将更新关于NO与这些抗氧化酶相互作用的最新知识,特别关注Asa-GSH循环的组分及其生理相关性。