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Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer

Oxidative stress, which is associated with an increased concentration of reactive oxygen species (ROS), is involved in the pathogenesis of numerous diseases including cancer. In response to increased ROS levels, cellular antioxidant molecules such as thioredoxin, peroxiredoxins, glutaredoxins, DJ-1,...

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Autores principales: Raninga, Prahlad V., Trapani, Giovanna Di, Tonissen, Kathryn F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4295760/
https://www.ncbi.nlm.nih.gov/pubmed/25593990
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author Raninga, Prahlad V.
Trapani, Giovanna Di
Tonissen, Kathryn F.
author_facet Raninga, Prahlad V.
Trapani, Giovanna Di
Tonissen, Kathryn F.
author_sort Raninga, Prahlad V.
collection PubMed
description Oxidative stress, which is associated with an increased concentration of reactive oxygen species (ROS), is involved in the pathogenesis of numerous diseases including cancer. In response to increased ROS levels, cellular antioxidant molecules such as thioredoxin, peroxiredoxins, glutaredoxins, DJ-1, and superoxide dismutases are upregulated to counteract the detrimental effect of ROS. However, cancer cells take advantage of upregulated antioxidant molecules for protection against ROS-induced cell damage. This review focuses on two antioxidant systems, Thioredoxin and DJ-1, which are upregulated in many human cancer types, correlating with tumour proliferation, survival, and chemo-resistance. Thus, both of these antioxidant molecules serve as potential molecular targets to treat cancer. However, targeting one of these antioxidants alone may not be an effective anti-cancer therapy. Both of these antioxidant molecules are interlinked and act on similar downstream targets such as NF-κβ, PTEN, and Nrf2 to exert cytoprotection. Inhibiting either thioredoxin or DJ-1 alone may allow the other antioxidant to activate downstream signalling cascades leading to tumour cell survival and proliferation. Targeting both thioredoxin and DJ-1 in conjunction may completely shut down the antioxidant defence system regulated by these molecules. This review focuses on the cross-talk between thioredoxin and DJ-1 and highlights the importance and consequences of targeting thioredoxin and DJ-1 together to develop an effective anti-cancer therapeutic strategy.
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spelling pubmed-42957602015-01-15 Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer Raninga, Prahlad V. Trapani, Giovanna Di Tonissen, Kathryn F. Oncoscience Reviews Oxidative stress, which is associated with an increased concentration of reactive oxygen species (ROS), is involved in the pathogenesis of numerous diseases including cancer. In response to increased ROS levels, cellular antioxidant molecules such as thioredoxin, peroxiredoxins, glutaredoxins, DJ-1, and superoxide dismutases are upregulated to counteract the detrimental effect of ROS. However, cancer cells take advantage of upregulated antioxidant molecules for protection against ROS-induced cell damage. This review focuses on two antioxidant systems, Thioredoxin and DJ-1, which are upregulated in many human cancer types, correlating with tumour proliferation, survival, and chemo-resistance. Thus, both of these antioxidant molecules serve as potential molecular targets to treat cancer. However, targeting one of these antioxidants alone may not be an effective anti-cancer therapy. Both of these antioxidant molecules are interlinked and act on similar downstream targets such as NF-κβ, PTEN, and Nrf2 to exert cytoprotection. Inhibiting either thioredoxin or DJ-1 alone may allow the other antioxidant to activate downstream signalling cascades leading to tumour cell survival and proliferation. Targeting both thioredoxin and DJ-1 in conjunction may completely shut down the antioxidant defence system regulated by these molecules. This review focuses on the cross-talk between thioredoxin and DJ-1 and highlights the importance and consequences of targeting thioredoxin and DJ-1 together to develop an effective anti-cancer therapeutic strategy. Impact Journals LLC 2014-01-02 /pmc/articles/PMC4295760/ /pubmed/25593990 Text en Copyright: © 2014 Raninga et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Reviews
Raninga, Prahlad V.
Trapani, Giovanna Di
Tonissen, Kathryn F.
Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer
title Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer
title_full Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer
title_fullStr Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer
title_full_unstemmed Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer
title_short Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer
title_sort cross talk between two antioxidant systems, thioredoxin and dj-1: consequences for cancer
topic Reviews
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4295760/
https://www.ncbi.nlm.nih.gov/pubmed/25593990
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