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Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons

Cerebrovascular disease (CVD) is one of the leading causes of mortality worldwide. The role of cytochrome c oxidase subunit 6B1 (COX6B1) in the central nervous system remains unclear. The present study aimed to analyze the role of COX6B1 in rat hippocampal neurons extracted from fetal rats. The subc...

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Autores principales: Yang, Shan, Wu, Peng, Xiao, Jianwen, Jiang, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6522897/
https://www.ncbi.nlm.nih.gov/pubmed/31059068
http://dx.doi.org/10.3892/mmr.2019.10144
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author Yang, Shan
Wu, Peng
Xiao, Jianwen
Jiang, Li
author_facet Yang, Shan
Wu, Peng
Xiao, Jianwen
Jiang, Li
author_sort Yang, Shan
collection PubMed
description Cerebrovascular disease (CVD) is one of the leading causes of mortality worldwide. The role of cytochrome c oxidase subunit 6B1 (COX6B1) in the central nervous system remains unclear. The present study aimed to analyze the role of COX6B1 in rat hippocampal neurons extracted from fetal rats. The subcellular localization of the neuron-specific marker microtubule-associated protein 2 was detected by immunofluorescence assay. Cell viability was assessed using a cell counting kit, and the levels of apoptosis and cytosolic Ca(2+) were analyzed by flow cytometry. The expression levels of the molecular factors downstream to COX6B1 were determined using reverse transcription-quantitative polymerase chain reaction and western blotting. Reoxygenation following oxygen-glucose deprivation (OGD) decreased cell viability and the expression levels of COX6B1 in a time-dependent manner, and 60 min of reoxygenation was identified as the optimal time period for establishing an ischemia/reperfusion (I/R) model. Overexpression of COX6B1 was demonstrated to reverse the viability of hippocampal neurons following I/R treatment. Specifically, COX6B1 overexpression decreased the cytosolic concentration of Ca(2+) and suppressed neuronal apoptosis, which were increased following I/R treatment. Furthermore, overexpression of COX6B1 increased the protein expression levels of apoptosis regulator BCL-2 and mitochondrial cytochrome c (cyt c), and decreased the protein expression levels of apoptosis regulator BCL2-associated X and cytosolic cyt c in I/R model cells. Collectively, the present study results suggested that COX6B1 overexpression may reverse I/R-induced neuronal damage by increasing the viability of neurons, by decreasing the cytosolic levels of Ca(2+) and by suppressing apoptosis. These results may facilitate the development of novel strategies for the prevention and treatment of CVD.
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spelling pubmed-65228972019-06-18 Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons Yang, Shan Wu, Peng Xiao, Jianwen Jiang, Li Mol Med Rep Articles Cerebrovascular disease (CVD) is one of the leading causes of mortality worldwide. The role of cytochrome c oxidase subunit 6B1 (COX6B1) in the central nervous system remains unclear. The present study aimed to analyze the role of COX6B1 in rat hippocampal neurons extracted from fetal rats. The subcellular localization of the neuron-specific marker microtubule-associated protein 2 was detected by immunofluorescence assay. Cell viability was assessed using a cell counting kit, and the levels of apoptosis and cytosolic Ca(2+) were analyzed by flow cytometry. The expression levels of the molecular factors downstream to COX6B1 were determined using reverse transcription-quantitative polymerase chain reaction and western blotting. Reoxygenation following oxygen-glucose deprivation (OGD) decreased cell viability and the expression levels of COX6B1 in a time-dependent manner, and 60 min of reoxygenation was identified as the optimal time period for establishing an ischemia/reperfusion (I/R) model. Overexpression of COX6B1 was demonstrated to reverse the viability of hippocampal neurons following I/R treatment. Specifically, COX6B1 overexpression decreased the cytosolic concentration of Ca(2+) and suppressed neuronal apoptosis, which were increased following I/R treatment. Furthermore, overexpression of COX6B1 increased the protein expression levels of apoptosis regulator BCL-2 and mitochondrial cytochrome c (cyt c), and decreased the protein expression levels of apoptosis regulator BCL2-associated X and cytosolic cyt c in I/R model cells. Collectively, the present study results suggested that COX6B1 overexpression may reverse I/R-induced neuronal damage by increasing the viability of neurons, by decreasing the cytosolic levels of Ca(2+) and by suppressing apoptosis. These results may facilitate the development of novel strategies for the prevention and treatment of CVD. D.A. Spandidos 2019-06 2019-04-10 /pmc/articles/PMC6522897/ /pubmed/31059068 http://dx.doi.org/10.3892/mmr.2019.10144 Text en Copyright: © Yang et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Yang, Shan
Wu, Peng
Xiao, Jianwen
Jiang, Li
Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons
title Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons
title_full Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons
title_fullStr Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons
title_full_unstemmed Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons
title_short Overexpression of COX6B1 protects against I/R-induced neuronal injury in rat hippocampal neurons
title_sort overexpression of cox6b1 protects against i/r-induced neuronal injury in rat hippocampal neurons
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6522897/
https://www.ncbi.nlm.nih.gov/pubmed/31059068
http://dx.doi.org/10.3892/mmr.2019.10144
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