Redox Regulation of PTEN by Peroxiredoxins.

Antioxidants (Basel)

Department of Biochemistry, Research Center for Aging and Geriatrics, Research Institute of Medical Sciences, Chonnam National University Medical School, Gwangju 501-190, Korea.

Published: February 2021

AI Article Synopsis

  • PTEN is a critical tumor suppressor gene often mutated in various cancers, regulating cell growth by inhibiting the PI3K/Akt pathway through dephosphorylation.
  • The oxidation of PTEN can occur through its cysteine residue, impacting its function and cellular signaling under oxidative stress, particularly influenced by reactive oxygen species (ROS).
  • Peroxiredoxins (Prxs), a family of peroxidases, play a significant role in maintaining PTEN functionality by preventing its oxidation, highlighting their potential in developing new cancer therapies.

Article Abstract

Phosphatase and tensin homolog deleted on chromosome 10 () is known as a tumor suppressor gene that is frequently mutated in numerous human cancers and inherited syndromes. PTEN functions as a negative regulator of PI3K/Akt signaling pathway by dephosphorylating phosphatidylinositol (3, 4, 5)-trisphosphate (PIP3) to phosphatidylinositol (4, 5)-bisphosphate (PIP2), which leads to the inhibition of cell growth, proliferation, cell survival, and protein synthesis. PTEN contains a cysteine residue in the active site that can be oxidized by peroxides, forming an intramolecular disulfide bond between Cys and Cys. Redox regulation of PTEN by reactive oxygen species (ROS) plays a crucial role in cellular signaling. Peroxiredoxins (Prxs) are a superfamily of peroxidase that catalyzes reduction of peroxides and maintains redox homeostasis. Mammalian Prxs have 6 isoforms (I-VI) and can scavenge cellular peroxides. It has been demonstrated that Prx I can preserve and promote the tumor-suppressive function of PTEN by preventing oxidation of PTEN under benign oxidative stress via direct interaction. Also, Prx II-deficient cells increased PTEN oxidation and insulin sensitivity. Furthermore, Prx III has been shown to protect PTEN from oxidation induced by 15s-HpETE and 12s-HpETE, these are potent inflammatory and pro-oxidant mediators. Understanding the tight connection between PTEN and Prxs is important for providing novel therapies. Herein, we summarized recent studies focusing on the relationship of Prxs and the redox regulation of PTEN.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7920247PMC
http://dx.doi.org/10.3390/antiox10020302DOI Listing

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