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Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation

Glutathione S-transferase pi (GSTpi) is a member of the GST family and plays many critical roles in cellular processes, including anti-oxidative and signal transduction. However, the role of anti-oxidant enzyme GSTpi against dopaminergic neuronal cell death has not been fully investigated. In the pr...

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Autores principales: Choi, Yeon Joo, Yeo, Hyeon Ji, Shin, Min Jea, Youn, Gi Soo, Park, Jung Hwan, Yeo, Eun Ji, Kwon, Hyun Jung, Lee, Lee Re, Kim, Na Yeon, Kwon, Su Yeon, Kim, Su Min, Kim, Dae Won, Jung, Hyo Young, Kwon, Oh-Shin, Lee, Chan Hee, Park, Jong Kook, Lee, Keun Wook, Han, Kyu Hyung, Park, Jinseu, Eum, Won Sik, Choi, Soo Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10045456/
https://www.ncbi.nlm.nih.gov/pubmed/36979816
http://dx.doi.org/10.3390/biomedicines11030836
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author Choi, Yeon Joo
Yeo, Hyeon Ji
Shin, Min Jea
Youn, Gi Soo
Park, Jung Hwan
Yeo, Eun Ji
Kwon, Hyun Jung
Lee, Lee Re
Kim, Na Yeon
Kwon, Su Yeon
Kim, Su Min
Kim, Dae Won
Jung, Hyo Young
Kwon, Oh-Shin
Lee, Chan Hee
Park, Jong Kook
Lee, Keun Wook
Han, Kyu Hyung
Park, Jinseu
Eum, Won Sik
Choi, Soo Young
author_facet Choi, Yeon Joo
Yeo, Hyeon Ji
Shin, Min Jea
Youn, Gi Soo
Park, Jung Hwan
Yeo, Eun Ji
Kwon, Hyun Jung
Lee, Lee Re
Kim, Na Yeon
Kwon, Su Yeon
Kim, Su Min
Kim, Dae Won
Jung, Hyo Young
Kwon, Oh-Shin
Lee, Chan Hee
Park, Jong Kook
Lee, Keun Wook
Han, Kyu Hyung
Park, Jinseu
Eum, Won Sik
Choi, Soo Young
author_sort Choi, Yeon Joo
collection PubMed
description Glutathione S-transferase pi (GSTpi) is a member of the GST family and plays many critical roles in cellular processes, including anti-oxidative and signal transduction. However, the role of anti-oxidant enzyme GSTpi against dopaminergic neuronal cell death has not been fully investigated. In the present study, we investigated the roles of cell permeable Tat-GSTpi fusion protein in a SH-SY5Y cell and a Parkinson’s disease (PD) mouse model. In the 1-methyl-4-phenylpyridinium (MPP(+))-exposed cells, Tat-GSTpi protein decreased DNA damage and reactive oxygen species (ROS) generation. Furthermore, this fusion protein increased cell viability by regulating MAPKs, Bcl-2, and Bax signaling. In addition, Tat-GSTpi protein delivered into the substantia nigra (SN) of mice brains protected dopaminergic neuronal cell death in the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-induced PD animal model. Our results indicate that the Tat-GSTpi protein inhibited cell death from MPP(+)- and MPTP-induced damage, suggesting that it plays a protective role during the loss of dopaminergic neurons in PD and that it could help to identify the mechanism responsible for neurodegenerative diseases, including PD.
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spelling pubmed-100454562023-03-29 Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation Choi, Yeon Joo Yeo, Hyeon Ji Shin, Min Jea Youn, Gi Soo Park, Jung Hwan Yeo, Eun Ji Kwon, Hyun Jung Lee, Lee Re Kim, Na Yeon Kwon, Su Yeon Kim, Su Min Kim, Dae Won Jung, Hyo Young Kwon, Oh-Shin Lee, Chan Hee Park, Jong Kook Lee, Keun Wook Han, Kyu Hyung Park, Jinseu Eum, Won Sik Choi, Soo Young Biomedicines Article Glutathione S-transferase pi (GSTpi) is a member of the GST family and plays many critical roles in cellular processes, including anti-oxidative and signal transduction. However, the role of anti-oxidant enzyme GSTpi against dopaminergic neuronal cell death has not been fully investigated. In the present study, we investigated the roles of cell permeable Tat-GSTpi fusion protein in a SH-SY5Y cell and a Parkinson’s disease (PD) mouse model. In the 1-methyl-4-phenylpyridinium (MPP(+))-exposed cells, Tat-GSTpi protein decreased DNA damage and reactive oxygen species (ROS) generation. Furthermore, this fusion protein increased cell viability by regulating MAPKs, Bcl-2, and Bax signaling. In addition, Tat-GSTpi protein delivered into the substantia nigra (SN) of mice brains protected dopaminergic neuronal cell death in the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-induced PD animal model. Our results indicate that the Tat-GSTpi protein inhibited cell death from MPP(+)- and MPTP-induced damage, suggesting that it plays a protective role during the loss of dopaminergic neurons in PD and that it could help to identify the mechanism responsible for neurodegenerative diseases, including PD. MDPI 2023-03-09 /pmc/articles/PMC10045456/ /pubmed/36979816 http://dx.doi.org/10.3390/biomedicines11030836 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Choi, Yeon Joo
Yeo, Hyeon Ji
Shin, Min Jea
Youn, Gi Soo
Park, Jung Hwan
Yeo, Eun Ji
Kwon, Hyun Jung
Lee, Lee Re
Kim, Na Yeon
Kwon, Su Yeon
Kim, Su Min
Kim, Dae Won
Jung, Hyo Young
Kwon, Oh-Shin
Lee, Chan Hee
Park, Jong Kook
Lee, Keun Wook
Han, Kyu Hyung
Park, Jinseu
Eum, Won Sik
Choi, Soo Young
Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation
title Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation
title_full Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation
title_fullStr Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation
title_full_unstemmed Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation
title_short Tat-GSTpi Inhibits Dopaminergic Cells against MPP(+)-Induced Cellular Damage via the Reduction of Oxidative Stress and MAPK Activation
title_sort tat-gstpi inhibits dopaminergic cells against mpp(+)-induced cellular damage via the reduction of oxidative stress and mapk activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10045456/
https://www.ncbi.nlm.nih.gov/pubmed/36979816
http://dx.doi.org/10.3390/biomedicines11030836
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