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Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells

Reduction in the expression of the anti-survival BH3-only proteins PUMA and Bim is associated with the pathogenesis of melanoma. However, we have found that the expression of the other BH3-only protein Noxa is commonly upregulated in melanoma cells, and that this is driven by oncogenic activation of...

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Autores principales: Liu, Yi Lun, Lai, Fritz, Wilmott, James S., Yan, Xu Guang, Liu, Xiao Ying, Luan, Qi, Guo, Su Tang, Jiang, Chen Chen, Tseng, Hsin-Yi, Scolyer, Richard A., Jin, Lei, Zhang, Xu Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4294377/
https://www.ncbi.nlm.nih.gov/pubmed/25365078
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author Liu, Yi Lun
Lai, Fritz
Wilmott, James S.
Yan, Xu Guang
Liu, Xiao Ying
Luan, Qi
Guo, Su Tang
Jiang, Chen Chen
Tseng, Hsin-Yi
Scolyer, Richard A.
Jin, Lei
Zhang, Xu Dong
author_facet Liu, Yi Lun
Lai, Fritz
Wilmott, James S.
Yan, Xu Guang
Liu, Xiao Ying
Luan, Qi
Guo, Su Tang
Jiang, Chen Chen
Tseng, Hsin-Yi
Scolyer, Richard A.
Jin, Lei
Zhang, Xu Dong
author_sort Liu, Yi Lun
collection PubMed
description Reduction in the expression of the anti-survival BH3-only proteins PUMA and Bim is associated with the pathogenesis of melanoma. However, we have found that the expression of the other BH3-only protein Noxa is commonly upregulated in melanoma cells, and that this is driven by oncogenic activation of MEK/ERK. Immunohistochemistry studies showed that Noxa was expressed at higher levels in melanomas than nevi. Moreover, the expression of Noxa was increased in metastatic compared to primary melanomas, and in thick primaries compared to thin primaries. Inhibition of oncogenic BRAF(V600E) or MEK downregulated Noxa, whereas activation of MEK/ERK caused its upregulation. In addition, introduction of BRAF(V600E) increased Noxa expression in melanocytes. Upregulation of Noxa was due to a transcriptional increase mediated by cAMP responsive element binding protein, activation of which was also increased by MEK/ERK signaling in melanoma cells. Significantly, Noxa appeared necessary for constitutive activation of autophagy, albeit at low levels, by MEK/ERK in melanoma cells. Furthermore, it was required for autophagy activation that delayed apoptosis in melanoma cells undergoing nutrient deprivation. These results reveal that oncogenic activation of MEK/ERK drives Noxa expression to promote autophagy, and suggest that Noxa has an indirect anti-apoptosis role in melanoma cells under nutrient starvation conditions.
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spelling pubmed-42943772015-01-21 Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells Liu, Yi Lun Lai, Fritz Wilmott, James S. Yan, Xu Guang Liu, Xiao Ying Luan, Qi Guo, Su Tang Jiang, Chen Chen Tseng, Hsin-Yi Scolyer, Richard A. Jin, Lei Zhang, Xu Dong Oncotarget Research Paper Reduction in the expression of the anti-survival BH3-only proteins PUMA and Bim is associated with the pathogenesis of melanoma. However, we have found that the expression of the other BH3-only protein Noxa is commonly upregulated in melanoma cells, and that this is driven by oncogenic activation of MEK/ERK. Immunohistochemistry studies showed that Noxa was expressed at higher levels in melanomas than nevi. Moreover, the expression of Noxa was increased in metastatic compared to primary melanomas, and in thick primaries compared to thin primaries. Inhibition of oncogenic BRAF(V600E) or MEK downregulated Noxa, whereas activation of MEK/ERK caused its upregulation. In addition, introduction of BRAF(V600E) increased Noxa expression in melanocytes. Upregulation of Noxa was due to a transcriptional increase mediated by cAMP responsive element binding protein, activation of which was also increased by MEK/ERK signaling in melanoma cells. Significantly, Noxa appeared necessary for constitutive activation of autophagy, albeit at low levels, by MEK/ERK in melanoma cells. Furthermore, it was required for autophagy activation that delayed apoptosis in melanoma cells undergoing nutrient deprivation. These results reveal that oncogenic activation of MEK/ERK drives Noxa expression to promote autophagy, and suggest that Noxa has an indirect anti-apoptosis role in melanoma cells under nutrient starvation conditions. Impact Journals LLC 2014-10-21 /pmc/articles/PMC4294377/ /pubmed/25365078 Text en Copyright: © 2014 Liu et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Liu, Yi Lun
Lai, Fritz
Wilmott, James S.
Yan, Xu Guang
Liu, Xiao Ying
Luan, Qi
Guo, Su Tang
Jiang, Chen Chen
Tseng, Hsin-Yi
Scolyer, Richard A.
Jin, Lei
Zhang, Xu Dong
Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells
title Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells
title_full Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells
title_fullStr Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells
title_full_unstemmed Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells
title_short Noxa upregulation by oncogenic activation of MEK/ERK through CREB promotes autophagy in human melanoma cells
title_sort noxa upregulation by oncogenic activation of mek/erk through creb promotes autophagy in human melanoma cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4294377/
https://www.ncbi.nlm.nih.gov/pubmed/25365078
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