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Updated: Oct 3, 2026

Methods to Classify Cytoplasmic Foci as Mammalian Stress Granules
Published on: May 12, 2017
NO- and H2S-derived post-translational modifications and stress resilience
Francisco J Corpas1, Jorge Taboada1, Miriam Molina-Escobar1
1Group of Antioxidants, Free Radicals and Nitric Oxide in Biotechnology, Food and Agriculture, Department of Biochemistry, Cell and Molecular Biology of Plants, Estación Experimental del Zaidín, Spanish National Research Council (CSIC), Granada, Spain.
Abstract:
Nitric oxide (NO) and hydrogen sulfide (H2S) have emerged as key gaseous signaling molecules in plants, playing central roles in regulating responses to a myriad of abiotic stresses. A major mechanism through which these molecules exert their effects is via post-translational modifications (PTMs) of proteins, including tyrosine nitration, S-nitrosation, and persulfidation. The last two correspond to redox-based modifications (oxiPTMs) that can rapidly and reversibly alter protein activity, stability, localization, and interactions, thereby enabling dynamic cellular reprogramming under stress conditions. Recent advances have highlighted the intricate crosstalk between NO- and H2S-mediated PTMs, revealing a complex regulatory network that fine-tunes stress signaling pathways and enhances plant resilience. Understanding how these modifications integrate environmental cues with cellular and subcellular responses provides new insights into the molecular basis of stress tolerance and offers potential strategies for improving crop performance under adverse conditions.
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