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July 21, 2015Redox Biology1,092 citationsOpen Access

Antioxidant responses and cellular adjustments to oxidative stress

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CECristina Espinosa‐DíezVMVerónica MiguelDMDaniela Mennerich

Key Points

  • To review the mechanisms underlying endogenous antioxidant responses, redox signaling, and cellular adaptations during physiological and pathophysiological oxidative stress.
  • Narrative synthesis of molecular mechanisms involving cellular nucleophiles, enzymatic antioxidant networks, and redox-driven post-translational modifications.
  • Evaluation of transcriptional pathways such as Nrf2-Keap1 and post-transcriptional regulators in models of endoplasmic reticulum stress and ischemia-reperfusion.
  • Endogenous nucleophiles like glutathione integrate with antioxidant enzymes such as peroxiredoxins to maintain cellular redox equilibrium and drive signaling.
  • Pathways including Nrf2-Keap1 activation, localized thiol modifications, and redox-sensitive microRNAs coordinate protective gene expression and cellular survival in response to oxidative injury.

Abstract

Redox biological reactions are now accepted to bear the Janus faceted feature of promoting both physiological signaling responses and pathophysiological cues. Endogenous antioxidant molecules participate in both scenarios. This review focuses on the role of crucial cellular nucleophiles, such as glutathione, and their capacity to interact with oxidants and to establish networks with other critical enzymes such as peroxiredoxins. We discuss the importance of the Nrf2-Keap1 pathway as an example of a transcriptional antioxidant response and we summarize transcriptional routes related to redox activation. As examples of pathophysiological cellular and tissular settings where antioxidant responses are major players we highlight endoplasmic reticulum stress and ischemia reperfusion. Topologically confined redox-mediated post-translational modifications of thiols are considered important molecular mechanisms mediating many antioxidant responses, whereas redox-sensitive microRNAs have emerged as key players in the posttranscriptional regulation of redox-mediated gene expression. Understanding such mechanisms may provide the basis for antioxidant-based therapeutic interventions in redox-related diseases.

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Cite This Study

Espinosa‐Díez et al. (2015) studied this question.

synapsesocial.com/papers/69d96e88da3af5b1d08368a1https://doi.org/10.1016/j.redox.2015.07.008
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