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Reactive Oxygen Species Signaling and Oxidative Stress: Transcriptional Regulation and Evolution

Yuhang Hong, Alessandra Boiti, Daniela Vallone, Nicholas S. Foulkes

Antioxidants · 2024 · ▲ 623 citations

Abstract

Since the evolution of the aerobic metabolism, reactive oxygen species (ROS) have represented significant challenges to diverse life forms. In recent decades, increasing knowledge has revealed a dual role for ROS in cell physiology, showing they serve as a major source of cellular damage while also functioning as important signaling molecules in various biological processes. Our understanding of ROS homeostasis and ROS-mediated cellular signaling pathways has presumed that they are ancient and highly conserved mechanisms shared by most organisms. However, emerging evidence highlights the complexity and plasticity of ROS signaling, particularly in animals that have evolved in extreme environments. In this review, we focus on ROS generation, antioxidative systems and the main signaling pathways that are influenced by ROS. In addition, we discuss ROS's responsive transcription regulation and how it may have been shaped over the course of evolution.

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Provenance

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OpenAlex
DOI
10.3390/antiox13030312
Canonical
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Fetched
2026-07-28 MST

Cite this

APA
Hong, Y., Boiti, A., Vallone, D., &amp; Foulkes, N.S. (2024). Reactive Oxygen Species Signaling and Oxidative Stress: Transcriptional Regulation and Evolution. <em>Antioxidants</em>. https://doi.org/10.3390/antiox13030312
Vancouver
Hong Y, Boiti A, Vallone D, Foulkes NS. Reactive Oxygen Species Signaling and Oxidative Stress: Transcriptional Regulation and Evolution. Antioxidants. 2024. doi:10.3390/antiox13030312.
BibTeX
@article{yuhang2024Reacti, title = {Reactive Oxygen Species Signaling and Oxidative Stress: Transcriptional Regulation and Evolution}, author = {Yuhang Hong and Alessandra Boiti and Daniela Vallone and Nicholas S. Foulkes}, journal = {Antioxidants}, year = {2024}, doi = {10.3390/antiox13030312}, }

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