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Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress

Heat shock proteins (HSPs), originally identified as heat-inducible gene products, are a family of highly conserved proteins that respond to a wide variety of stress including oxidative stress. Although both acute and chronic oxidative stress have been well demonstrated to induce HSP responses, litt...

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Autores principales: Oksala, Niku K.J., Ekmekçi, F. Güler, Özsoy, Ergi, Kirankaya, Şerife, Kokkola, Tarja, Emecen, Güzin, Lappalainen, Jani, Kaarniranta, Kai, Atalay, Mustafa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4225528/
https://www.ncbi.nlm.nih.gov/pubmed/25462062
http://dx.doi.org/10.1016/j.redox.2014.10.003
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author Oksala, Niku K.J.
Ekmekçi, F. Güler
Özsoy, Ergi
Kirankaya, Şerife
Kokkola, Tarja
Emecen, Güzin
Lappalainen, Jani
Kaarniranta, Kai
Atalay, Mustafa
author_facet Oksala, Niku K.J.
Ekmekçi, F. Güler
Özsoy, Ergi
Kirankaya, Şerife
Kokkola, Tarja
Emecen, Güzin
Lappalainen, Jani
Kaarniranta, Kai
Atalay, Mustafa
author_sort Oksala, Niku K.J.
collection PubMed
description Heat shock proteins (HSPs), originally identified as heat-inducible gene products, are a family of highly conserved proteins that respond to a wide variety of stress including oxidative stress. Although both acute and chronic oxidative stress have been well demonstrated to induce HSP responses, little evidence is available whether increased HSP levels provide enhanced protection against oxidative stress under elevated yet sublethal temperatures. We studied relationships between oxidative stress and HSPs in a physiological model by using Garra rufa (doctor fish), a fish species naturally acclimatized to different thermal conditions. We compared fish naturally living in a hot spring with relatively high water temperature (34.4±0.6 °C) to those living in normal river water temperature (25.4±4.7 °C), and found that levels of all the studied HSPs (HSP70, HSP60, HSP90, HSC70 and GRP75) were higher in fish living in elevated water temperature compared with normal river water temperature. In contrast, indicators of oxidative stress, including protein carbonyls and lipid hydroperoxides, were decreased in fish living in the elevated temperature, indicating that HSP levels are inversely associated with oxidative stress. The present results provide evidence that physiologically increased HSP levels provide protection against oxidative stress and enhance cytoprotection.
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spelling pubmed-42255282014-11-11 Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress Oksala, Niku K.J. Ekmekçi, F. Güler Özsoy, Ergi Kirankaya, Şerife Kokkola, Tarja Emecen, Güzin Lappalainen, Jani Kaarniranta, Kai Atalay, Mustafa Redox Biol Research Paper Heat shock proteins (HSPs), originally identified as heat-inducible gene products, are a family of highly conserved proteins that respond to a wide variety of stress including oxidative stress. Although both acute and chronic oxidative stress have been well demonstrated to induce HSP responses, little evidence is available whether increased HSP levels provide enhanced protection against oxidative stress under elevated yet sublethal temperatures. We studied relationships between oxidative stress and HSPs in a physiological model by using Garra rufa (doctor fish), a fish species naturally acclimatized to different thermal conditions. We compared fish naturally living in a hot spring with relatively high water temperature (34.4±0.6 °C) to those living in normal river water temperature (25.4±4.7 °C), and found that levels of all the studied HSPs (HSP70, HSP60, HSP90, HSC70 and GRP75) were higher in fish living in elevated water temperature compared with normal river water temperature. In contrast, indicators of oxidative stress, including protein carbonyls and lipid hydroperoxides, were decreased in fish living in the elevated temperature, indicating that HSP levels are inversely associated with oxidative stress. The present results provide evidence that physiologically increased HSP levels provide protection against oxidative stress and enhance cytoprotection. Elsevier 2014-10-24 /pmc/articles/PMC4225528/ /pubmed/25462062 http://dx.doi.org/10.1016/j.redox.2014.10.003 Text en © 2014 Published by Elsevier B.V. All rights reserved. https://creativecommons.org/licenses/by-nc-nd/3.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License (https://creativecommons.org/licenses/by-nc-nd/3.0/) .
spellingShingle Research Paper
Oksala, Niku K.J.
Ekmekçi, F. Güler
Özsoy, Ergi
Kirankaya, Şerife
Kokkola, Tarja
Emecen, Güzin
Lappalainen, Jani
Kaarniranta, Kai
Atalay, Mustafa
Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
title Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
title_full Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
title_fullStr Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
title_full_unstemmed Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
title_short Natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
title_sort natural thermal adaptation increases heat shock protein levels and decreases oxidative stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4225528/
https://www.ncbi.nlm.nih.gov/pubmed/25462062
http://dx.doi.org/10.1016/j.redox.2014.10.003
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