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藻类中一氧化氮的产生与蛋白质S-亚硝基化作用

Nitric oxide production and protein S-nitrosation in algae.

作者信息

Chaudron Zoé, Nicolas-Francès Valérie, Pichereaux Carole, Hichami Siham, Rosnoblet Claire, Besson-Bard Angelique, Wendehenne David

机构信息

Université Bourgogne Europe, Institut Agro Dijon, INRAE, UMR Agroécologie, Dijon, France.

Fédération de Recherche (FR3450), Agrobiosciences, Interactions et Biodiversité (FRAIB), CNRS, Toulouse, France; Institut de Pharmacologie et de Biologie Structurale (IPBS), Université de Toulouse UPS, CNRS, Toulouse, France.

出版信息

Plant Sci. 2025 Jun;355:112472. doi: 10.1016/j.plantsci.2025.112472. Epub 2025 Mar 17.

Abstract

Key roles for nitric oxide in signalling processes and plant physiological processes are now well established. In particular, the identification and functional characterisation of proteins regulated by S-nitrosation, a NO-dependent post-translational modification, provided remarkable insights into the subtle mechanisms by which NO mediates its effects. Nevertheless, and despite the considerable progress in understanding NO signalling, the question of how plant cells produce NO is not yet fully resolved. Interestingly, there is now compelling evidence that algae constitute promising biological models to investigate NO production and functions in plants. This article reviews recent highlights of research on NO production in algae and provides an overview of S-nitrosation in these organisms at the proteome level.

摘要

一氧化氮在信号传导过程和植物生理过程中的关键作用现已得到充分证实。特别是,对由S-亚硝基化(一种依赖于NO的翻译后修饰)调节的蛋白质的鉴定和功能表征,为NO介导其效应的微妙机制提供了显著的见解。然而,尽管在理解NO信号传导方面取得了相当大的进展,但植物细胞如何产生NO的问题尚未完全解决。有趣的是,现在有令人信服的证据表明,藻类构成了研究植物中NO产生和功能的有前景的生物学模型。本文综述了藻类中NO产生的研究最新亮点,并概述了这些生物体蛋白质组水平上的S-亚硝基化情况。

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