NOS-mediated NO production and protein S-nitrosylation in Mamiellophyceae.

IF 2.5 3区 生物学 Q3 CELL BIOLOGY
Tatiana Lapina, Vladislav Statinov, Vitalina Vlasova, Elena Ermilova
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引用次数: 0

Abstract

Nitric oxide (NO) functions as a signaling molecule in many biological processes in green algae and higher plants. Although the mechanisms of NO synthesis in most plants are the subject of ongoing research and debate, a functional NO synthase (NOS) has been characterized only in Ostreococcus tauri. To date, the question of whether NO synthesis occurs in other NOS-containing members of the class Mamiellophyceaea, which gave rise to the core Chlorophyta, has not been elucidated. We found that, like O. tauri, O. lucimarinus and Bathycoccus prasinos grow on arginine as the sole nitrogen source, and their NOSs function and produce NO in cells. Moreover, in O. tauri, O. lucimarinus, and B. prasinos, NO exerts its biological functions through protein S-nitrosylation. Collectively, our data suggest that both NO and S-nitrosylated proteins are important mediators in the process of cell growth in NOS-containing representatives of Mamiellophyceae. Thus, we have updated the data related to protein S-nitrosylation as an evolutionarily conserved mechanism regulating many aspects of cell signaling in plants.

乳藻中NO介导的NO生成和蛋白质s -亚硝基化。
一氧化氮(NO)在绿藻和高等植物的许多生物过程中起着信号分子的作用。尽管在大多数植物中NO合成的机制仍是研究和争论的主题,但功能性NO合成酶(NOS)仅在牛链球菌中被表征。迄今为止,是否在产生核心绿藻的Mamiellophyceaea类的其他含NO的成员中也发生了NO合成的问题尚未阐明。我们发现,与O. tauri一样,O. lucimarinus和O. Bathycoccus prasinos以精氨酸为唯一氮源生长,它们的NOSs在细胞内发挥作用并产生NO。此外,在O. tauri、O. lucimarinus和B. prasinos中,NO通过蛋白质s -亚硝基化发挥其生物学功能。总的来说,我们的数据表明,NO和s -亚硝基化蛋白在含nos的乳藻科代表的细胞生长过程中都是重要的介质。因此,我们已经更新了有关蛋白质s -亚硝基化作为一种进化保守机制调节植物细胞信号传导的许多方面的相关数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Protoplasma
Protoplasma 生物-细胞生物学
CiteScore
6.60
自引率
6.90%
发文量
99
审稿时长
4-8 weeks
期刊介绍: Protoplasma publishes original papers, short communications and review articles which are of interest to cell biology in all its scientific and applied aspects. We seek contributions dealing with plants and animals but also prokaryotes, protists and fungi, from the following fields: cell biology of both single and multicellular organisms molecular cytology the cell cycle membrane biology including biogenesis, dynamics, energetics and electrophysiology inter- and intracellular transport the cytoskeleton organelles experimental and quantitative ultrastructure cyto- and histochemistry Further, conceptual contributions such as new models or discoveries at the cutting edge of cell biology research will be published under the headings "New Ideas in Cell Biology".
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