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Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes

Dopamine (DA) is a well known oxidative neurotoxin. In addition, Akt has been reported to deliver a survival signal that inhibits apoptosis. However, it has also been reported that chronic Akt activation leads to apoptosis in response to oxidative stress. The objective of the present study was to in...

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Autores principales: Choi, Hye-Ryung, Shin, Jung-Won, Lee, Hyun-Kyoung, Kim, Jin-Young, Huh, Chang-Hun, Youn, Sang-Woong, Park, Kyoung Chan
Formato: Texto
Lenguaje:English
Publicado: Landes Bioscience 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2952081/
https://www.ncbi.nlm.nih.gov/pubmed/20716947
http://dx.doi.org/10.4161/oxim.3.3.8
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author Choi, Hye-Ryung
Shin, Jung-Won
Lee, Hyun-Kyoung
Kim, Jin-Young
Huh, Chang-Hun
Youn, Sang-Woong
Park, Kyoung Chan
author_facet Choi, Hye-Ryung
Shin, Jung-Won
Lee, Hyun-Kyoung
Kim, Jin-Young
Huh, Chang-Hun
Youn, Sang-Woong
Park, Kyoung Chan
author_sort Choi, Hye-Ryung
collection PubMed
description Dopamine (DA) is a well known oxidative neurotoxin. In addition, Akt has been reported to deliver a survival signal that inhibits apoptosis. However, it has also been reported that chronic Akt activation leads to apoptosis in response to oxidative stress. The objective of the present study was to investigate the possible role of the Akt pathway in vitiligo and its possible relationship with DA-induced cell death using Mel-Ab cells. Cultured Mel-Ab cells were treated with DA with and without N-Acetyl-L-cysteine (NAC), which is known to have antioxidative properties. Cell viability was then assessed by a crystal violet assay and Annexin staining was performed. The changes in the expression of Akt were analyzed by western blot analysis. The cell viability was reduced by approximately 60% in response to treatment with 500 µM DA, and NAC effectively prevented this cytotoxic effect. Likewise, treatment with DA produced numerous Annexin positive cells, while treatment with NAC prevented this apoptotic cell death. Akt was slowly phosphorylated after treatment with DA, while NAC clearly inhibited the DA-induced Akt activation. Western blot analysis also showed that treatment with DA induced the activation of Bad. Finally, LY294002 exerted a protective effect against DA-induced apoptotic cell death. DA may induce redox-sensitive Akt activation and increase the level of Bad, which can promote cell death by heterodimerization with survival proteins. Moreover, NAC effectively protects against DA-induced melanocyte death via inhibition of DA-induced Akt activation.
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spelling pubmed-29520812011-04-25 Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes Choi, Hye-Ryung Shin, Jung-Won Lee, Hyun-Kyoung Kim, Jin-Young Huh, Chang-Hun Youn, Sang-Woong Park, Kyoung Chan Oxid Med Cell Longev Research Papers Dopamine (DA) is a well known oxidative neurotoxin. In addition, Akt has been reported to deliver a survival signal that inhibits apoptosis. However, it has also been reported that chronic Akt activation leads to apoptosis in response to oxidative stress. The objective of the present study was to investigate the possible role of the Akt pathway in vitiligo and its possible relationship with DA-induced cell death using Mel-Ab cells. Cultured Mel-Ab cells were treated with DA with and without N-Acetyl-L-cysteine (NAC), which is known to have antioxidative properties. Cell viability was then assessed by a crystal violet assay and Annexin staining was performed. The changes in the expression of Akt were analyzed by western blot analysis. The cell viability was reduced by approximately 60% in response to treatment with 500 µM DA, and NAC effectively prevented this cytotoxic effect. Likewise, treatment with DA produced numerous Annexin positive cells, while treatment with NAC prevented this apoptotic cell death. Akt was slowly phosphorylated after treatment with DA, while NAC clearly inhibited the DA-induced Akt activation. Western blot analysis also showed that treatment with DA induced the activation of Bad. Finally, LY294002 exerted a protective effect against DA-induced apoptotic cell death. DA may induce redox-sensitive Akt activation and increase the level of Bad, which can promote cell death by heterodimerization with survival proteins. Moreover, NAC effectively protects against DA-induced melanocyte death via inhibition of DA-induced Akt activation. Landes Bioscience 2010 /pmc/articles/PMC2952081/ /pubmed/20716947 http://dx.doi.org/10.4161/oxim.3.3.8 Text en Copyright © 2010 Landes Bioscience
spellingShingle Research Papers
Choi, Hye-Ryung
Shin, Jung-Won
Lee, Hyun-Kyoung
Kim, Jin-Young
Huh, Chang-Hun
Youn, Sang-Woong
Park, Kyoung Chan
Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes
title Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes
title_full Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes
title_fullStr Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes
title_full_unstemmed Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes
title_short Potential redox-sensitive Akt activation by dopamine activates Bad and promotes cell death in melanocytes
title_sort potential redox-sensitive akt activation by dopamine activates bad and promotes cell death in melanocytes
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2952081/
https://www.ncbi.nlm.nih.gov/pubmed/20716947
http://dx.doi.org/10.4161/oxim.3.3.8
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