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Plant thiol peroxidases as redox sensors and signal transducers in abiotic stress acclimation

期刊

FREE RADICAL BIOLOGY AND MEDICINE
卷 193, 期 -, 页码 764-778

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2022.11.019

关键词

Glutathione peroxidase; Hydrogen peroxide; Peroxiredoxin; Redox regulatory network; Signaling

资金

  1. Deutsche Forschungsgemeinschaft
  2. [DI 346/23]

向作者/读者索取更多资源

The temporal and spatial patterns of reactive oxygen species (ROS) in cells and tissues determine the plant's response to various stresses. Recent progress in dynamic cell imaging probes and sensitive proteomics has provided important information on the cellular redox state. Thiol peroxidases play a central role in this process.
The temporal and spatial patterns of reactive oxygen species (ROS) in cells and tissues decisively determine the plant acclimation response to diverse abiotic and biotic stresses. Recent progress in developing dynamic cell imaging probes provides kinetic information on changes in parameters like H2O2, glutathione (GSH/GSSG) and NAD(P)H/NAD(P)+, that play a crucial role in tuning the cellular redox state. Central to redox-based regulation is the thiol-redox regulatory network of the cell that integrates reductive information from metabolism and oxidative ROS signals. Sensitive proteomics allow for monitoring changes in redox-related posttranslational modifications. Thiol peroxidases act as sensitive peroxide and redox sensors and play a central role in this signal transduction process. Peroxiredoxins (PRX) and glutathione peroxidases (GPX) are the two main thiol peroxi-dases and their function in ROS sensing and redox signaling in plants is emerging at present and summarized in this review. Depending on their redox state, PRXs and GPXs act as redox-dependent binding partners, direct oxidants of target proteins and oxidants of thiol redox transmitters that in turn oxidize target proteins. With their versatile functions, the multiple isoforms of plant thiol peroxidases play a central role in plant stress acclimation, e.g. to high light or osmotic stress, but also in ROS-mediated immunity and development.

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