Chemical Signalling, Institute of Crop Science and Resource Conservation (INRES), University of Bonn, Friedrich-Ebert-Allee 144, D-53113Bonn, Germany.
Biochemistry and Physiology of Plants, Faculty of Biology, W5-134, Bielefeld University, University Street 25, D-33501Bielefeld, Germany.
Biol Chem. 2020 Nov 27;402(3):399-423. doi: 10.1515/hsz-2020-0291. Print 2021 Feb 23.
Cys-based redox regulation was long regarded a major adjustment mechanism of photosynthesis and metabolism in plants, but in the recent years, its scope has broadened to most fundamental processes of plant life. Drivers of the recent surge in new insights into plant redox regulation have been the availability of the genome-scale information combined with technological advances such as quantitative redox proteomics and biosensing. Several unexpected findings have started to shift paradigms of redox regulation. Here, we elaborate on a selection of recent advancements, and pinpoint emerging areas and questions of redox biology in plants. We highlight the significance of (1) proactive HO generation, (2) the chloroplast as a unique redox site, (3) specificity in thioredoxin complexity, (4) how to oxidize redox switches, (5) governance principles of the redox network, (6) glutathione peroxidase-like proteins, (7) ferroptosis, (8) oxidative protein folding in the ER for phytohormonal regulation, (9) the apoplast as an unchartered redox frontier, (10) redox regulation of respiration, (11) redox transitions in seed germination and (12) the mitochondria as potential new players in reductive stress safeguarding. Our emerging understanding in plants may serve as a blueprint to scrutinize principles of reactive oxygen and Cys-based redox regulation across organisms.
基于半胱氨酸的氧化还原调控长期以来被视为植物光合作用和代谢的主要调节机制,但近年来,其范围已扩大到植物生命的大多数基本过程。推动近年来植物氧化还原调控新见解激增的因素是基因组规模信息的可用性,以及定量氧化还原蛋白质组学和生物传感等技术的进步。一些出人意料的发现开始改变氧化还原调控的范式。在这里,我们详细阐述了最近的一些进展,并指出了植物氧化还原生物学中新兴的领域和问题。我们强调了(1)主动 HO 生成的重要性,(2)叶绿体作为一个独特的氧化还原位点,(3)硫氧还蛋白复杂性的特异性,(4)如何氧化氧化还原开关,(5)氧化还原网络的治理原则,(6)谷胱甘肽过氧化物酶样蛋白,(7)铁死亡,(8)质体中氧化蛋白折叠在植物激素调节中的作用,(9)质外体作为一个未开发的氧化还原前沿,(10)呼吸作用的氧化还原调控,(11)种子萌发过程中的氧化还原转变,以及(12)线粒体作为还原应激保护的潜在新角色。我们对植物的新兴认识可以作为一个蓝图,来仔细研究活性氧和基于半胱氨酸的氧化还原调控在生物体中的原则。