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Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo

DJ-1, a Parkinson's disease-associated protein, is strongly up-regulated in reactive astrocytes in Parkinson's disease. This is proposed to represent a neuronal protective response, although the mechanism has not yet been identified. We have generated a transgenic zebrafish line with incre...

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Autores principales: Frøyset, Ann Kristin, Edson, Amanda J., Gharbi, Naouel, Khan, Essa A., Dondorp, Daniel, Bai, Qing, Tiraboschi, Ettore, Suster, Maximiliano L., Connolly, Joanne B., Burton, Edward A., Fladmark, Kari E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5854894/
https://www.ncbi.nlm.nih.gov/pubmed/29525604
http://dx.doi.org/10.1016/j.redox.2018.02.010
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author Frøyset, Ann Kristin
Edson, Amanda J.
Gharbi, Naouel
Khan, Essa A.
Dondorp, Daniel
Bai, Qing
Tiraboschi, Ettore
Suster, Maximiliano L.
Connolly, Joanne B.
Burton, Edward A.
Fladmark, Kari E.
author_facet Frøyset, Ann Kristin
Edson, Amanda J.
Gharbi, Naouel
Khan, Essa A.
Dondorp, Daniel
Bai, Qing
Tiraboschi, Ettore
Suster, Maximiliano L.
Connolly, Joanne B.
Burton, Edward A.
Fladmark, Kari E.
author_sort Frøyset, Ann Kristin
collection PubMed
description DJ-1, a Parkinson's disease-associated protein, is strongly up-regulated in reactive astrocytes in Parkinson's disease. This is proposed to represent a neuronal protective response, although the mechanism has not yet been identified. We have generated a transgenic zebrafish line with increased astroglial DJ-1 expression driven by regulatory elements from the zebrafish GFAP gene. Larvae from this transgenic line are protected from oxidative stress-induced injuries as caused by MPP(+), a mitochondrial complex I inhibitor shown to induce dopaminergic cells death. In a global label-free proteomics analysis of wild type and transgenic larvae exposed to MPP(+), 3418 proteins were identified, in which 366 proteins were differentially regulated. In particular, we identified enzymes belonging to primary metabolism to be among proteins affected by MPP(+) in wild type animals, but not affected in the transgenic line. Moreover, by performing protein profiling on isolated astrocytes we showed that an increase in astrocytic DJ-1 expression up-regulated a large group of proteins associated with redox regulation, inflammation and mitochondrial respiration. The majority of these proteins have also been shown to be regulated by Nrf2. These findings provide a mechanistic insight into the protective role of astroglial up-regulation of DJ-1 and show that our transgenic zebrafish line with astrocytic DJ-1 over-expression can serve as a useful animal model to understand astrocyte-regulated neuroprotection associated with oxidative stress-related neurodegenerative disease.
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spelling pubmed-58548942018-03-19 Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo Frøyset, Ann Kristin Edson, Amanda J. Gharbi, Naouel Khan, Essa A. Dondorp, Daniel Bai, Qing Tiraboschi, Ettore Suster, Maximiliano L. Connolly, Joanne B. Burton, Edward A. Fladmark, Kari E. Redox Biol Research Paper DJ-1, a Parkinson's disease-associated protein, is strongly up-regulated in reactive astrocytes in Parkinson's disease. This is proposed to represent a neuronal protective response, although the mechanism has not yet been identified. We have generated a transgenic zebrafish line with increased astroglial DJ-1 expression driven by regulatory elements from the zebrafish GFAP gene. Larvae from this transgenic line are protected from oxidative stress-induced injuries as caused by MPP(+), a mitochondrial complex I inhibitor shown to induce dopaminergic cells death. In a global label-free proteomics analysis of wild type and transgenic larvae exposed to MPP(+), 3418 proteins were identified, in which 366 proteins were differentially regulated. In particular, we identified enzymes belonging to primary metabolism to be among proteins affected by MPP(+) in wild type animals, but not affected in the transgenic line. Moreover, by performing protein profiling on isolated astrocytes we showed that an increase in astrocytic DJ-1 expression up-regulated a large group of proteins associated with redox regulation, inflammation and mitochondrial respiration. The majority of these proteins have also been shown to be regulated by Nrf2. These findings provide a mechanistic insight into the protective role of astroglial up-regulation of DJ-1 and show that our transgenic zebrafish line with astrocytic DJ-1 over-expression can serve as a useful animal model to understand astrocyte-regulated neuroprotection associated with oxidative stress-related neurodegenerative disease. Elsevier 2018-02-17 /pmc/articles/PMC5854894/ /pubmed/29525604 http://dx.doi.org/10.1016/j.redox.2018.02.010 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Frøyset, Ann Kristin
Edson, Amanda J.
Gharbi, Naouel
Khan, Essa A.
Dondorp, Daniel
Bai, Qing
Tiraboschi, Ettore
Suster, Maximiliano L.
Connolly, Joanne B.
Burton, Edward A.
Fladmark, Kari E.
Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
title Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
title_full Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
title_fullStr Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
title_full_unstemmed Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
title_short Astroglial DJ-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
title_sort astroglial dj-1 over-expression up-regulates proteins involved in redox regulation and is neuroprotective in vivo
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5854894/
https://www.ncbi.nlm.nih.gov/pubmed/29525604
http://dx.doi.org/10.1016/j.redox.2018.02.010
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