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Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum

Protein aggregation, oxidative and nitrosative stress are etiological factors common to all major neurodegenerative disorders. Therefore, identifying proteins that function at the crossroads of these essential pathways may provide novel targets for therapy. Oxidation resistance 1 (Oxr1) is a protein...

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Autores principales: Svistunova, Daria M., Simon, Jillian N., Rembeza, Elzbieta, Crabtree, Mark, Yue, Wyatt W., Oliver, Peter L., Finelli, Mattéa J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6339520/
https://www.ncbi.nlm.nih.gov/pubmed/30389497
http://dx.doi.org/10.1016/j.freeradbiomed.2018.10.447
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author Svistunova, Daria M.
Simon, Jillian N.
Rembeza, Elzbieta
Crabtree, Mark
Yue, Wyatt W.
Oliver, Peter L.
Finelli, Mattéa J.
author_facet Svistunova, Daria M.
Simon, Jillian N.
Rembeza, Elzbieta
Crabtree, Mark
Yue, Wyatt W.
Oliver, Peter L.
Finelli, Mattéa J.
author_sort Svistunova, Daria M.
collection PubMed
description Protein aggregation, oxidative and nitrosative stress are etiological factors common to all major neurodegenerative disorders. Therefore, identifying proteins that function at the crossroads of these essential pathways may provide novel targets for therapy. Oxidation resistance 1 (Oxr1) is a protein proven to be neuroprotective against oxidative stress, although the molecular mechanisms involved remain unclear. Here, we demonstrate that Oxr1 interacts with the multifunctional protein, peroxiredoxin 2 (Prdx2), a potent antioxidant enzyme highly expressed in the brain that can also act as a molecular chaperone. Using a combination of in vitro assays and two animal models, we discovered that expression levels of Oxr1 regulate the degree of oligomerization of Prdx2 and also its post-translational modifications (PTMs), specifically suggesting that Oxr1 acts as a functional switch between the antioxidant and chaperone functions of Prdx2. Furthermore, we showed in the Oxr1 knockout mouse that Prdx2 is aberrantly modified by overoxidation and S-nitrosylation in the cerebellum at the pre-symptomatic stage; this in-turn affected the oligomerization of Prdx2, potentially impeding its normal functions and contributing to the specific cerebellar neurodegeneration in this mouse model.
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spelling pubmed-63395202019-01-19 Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum Svistunova, Daria M. Simon, Jillian N. Rembeza, Elzbieta Crabtree, Mark Yue, Wyatt W. Oliver, Peter L. Finelli, Mattéa J. Free Radic Biol Med Article Protein aggregation, oxidative and nitrosative stress are etiological factors common to all major neurodegenerative disorders. Therefore, identifying proteins that function at the crossroads of these essential pathways may provide novel targets for therapy. Oxidation resistance 1 (Oxr1) is a protein proven to be neuroprotective against oxidative stress, although the molecular mechanisms involved remain unclear. Here, we demonstrate that Oxr1 interacts with the multifunctional protein, peroxiredoxin 2 (Prdx2), a potent antioxidant enzyme highly expressed in the brain that can also act as a molecular chaperone. Using a combination of in vitro assays and two animal models, we discovered that expression levels of Oxr1 regulate the degree of oligomerization of Prdx2 and also its post-translational modifications (PTMs), specifically suggesting that Oxr1 acts as a functional switch between the antioxidant and chaperone functions of Prdx2. Furthermore, we showed in the Oxr1 knockout mouse that Prdx2 is aberrantly modified by overoxidation and S-nitrosylation in the cerebellum at the pre-symptomatic stage; this in-turn affected the oligomerization of Prdx2, potentially impeding its normal functions and contributing to the specific cerebellar neurodegeneration in this mouse model. 2018-10-31 2019-01 /pmc/articles/PMC6339520/ /pubmed/30389497 http://dx.doi.org/10.1016/j.freeradbiomed.2018.10.447 Text en 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 Article
Svistunova, Daria M.
Simon, Jillian N.
Rembeza, Elzbieta
Crabtree, Mark
Yue, Wyatt W.
Oliver, Peter L.
Finelli, Mattéa J.
Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
title Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
title_full Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
title_fullStr Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
title_full_unstemmed Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
title_short Oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
title_sort oxidation resistance 1 regulates post-translational modifications of peroxiredoxin 2 in the cerebellum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6339520/
https://www.ncbi.nlm.nih.gov/pubmed/30389497
http://dx.doi.org/10.1016/j.freeradbiomed.2018.10.447
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