Petřivalský Marek, Luhová Lenka
Department of Biochemistry, Faculty of Science, Palacký University, Olomouc, Czechia.
Front Plant Sci. 2020 May 19;11:598. doi: 10.3389/fpls.2020.00598. eCollection 2020.
Nitration of diverse biomolecules, including proteins, lipids and nucleic acid, by reactive nitrogen species represents one of the key mechanisms mediating nitric oxide (NO) biological activity across all types of organisms. 8-nitroguanosine 3'5'-cyclic monophosphate (8-nitro-cGMP) has been described as a unique electrophilic intermediate involved in intracellular redox signaling. In animal cells, 8-nitro-cGMP is formed from guanosine-5'-triphosphate by a combined action of reactive nitrogen (RNS) and oxygen species (ROS) and guanylate cyclase. As demonstrated originally in animal models, 8-nitro-cGMP shows certain biological activities closely resembling its analog cGMP; however, its regulatory functions are mediated mainly by its electrophilic properties and chemical interactions with protein thiols resulting in a novel protein post-translational modification termed S-guanylation. In , 8-nitro-cGMP was reported to mediate NO-dependent signaling pathways controlling abscisic acid (ABA)-induced stomatal closure, however, its derivative 8-mercapto-cGMP (8-SH-cGMP) was later shown as the active component of hydrogen sulfide (HS)-mediated guard cell signaling. Here we present a survey of current knowledge on biosynthesis, metabolism and biological activities of nitrated nucleotides with special attention to described and proposed functions of 8-nitro-cGMP and its metabolites in plant physiology and stress responses.
活性氮物种对包括蛋白质、脂质和核酸在内的多种生物分子进行硝化,是介导一氧化氮(NO)在所有生物类型中生物活性的关键机制之一。8-硝基鸟苷3',5'-环一磷酸(8-硝基-cGMP)被描述为参与细胞内氧化还原信号传导的一种独特亲电中间体。在动物细胞中,8-硝基-cGMP由鸟苷-5'-三磷酸通过活性氮(RNS)和氧物种(ROS)以及鸟苷酸环化酶的联合作用形成。正如最初在动物模型中所证明的那样,8-硝基-cGMP表现出某些与其类似物cGMP非常相似的生物活性;然而,其调节功能主要由其亲电性质以及与蛋白质硫醇的化学相互作用介导,从而导致一种称为S-鸟苷酸化的新型蛋白质翻译后修饰。在植物中,据报道8-硝基-cGMP介导控制脱落酸(ABA)诱导气孔关闭的NO依赖性信号通路,然而,其衍生物8-巯基-cGMP(8-SH-cGMP)后来被证明是硫化氢(HS)介导的保卫细胞信号传导的活性成分。在此,我们综述了关于硝化核苷酸的生物合成、代谢和生物活性的当前知识,特别关注8-硝基-cGMP及其代谢物在植物生理学和应激反应中已描述和提出的功能。