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REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling

Prostate cancer (PCa) with neuroendocrine differentiation (NED) is tightly associated with hormone refractory PCa (HRPC), an aggressive form of cancer that is nearly impossible to treat. Determining the mechanism of the development of NED may yield novel therapeutic strategies for HRPC. Here, we fir...

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Autores principales: Lin, Tzu-Ping, Chang, Yi-Ting, Lee, Sung-Yuan, Campbell, Mel, Wang, Tien-Chiao, Shen, Shu-Huei, Chung, Hsiao-Jen, Chang, Yen-Hwa, Chiu, Allen W., Pan, Chin-Chen, Lin, Chi-Hung, Chu, Cheng-Ying, Kung, Hsing-Jien, Cheng, Chia-Yang, Chang, Pei-Ching
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5041970/
https://www.ncbi.nlm.nih.gov/pubmed/27034167
http://dx.doi.org/10.18632/oncotarget.8433
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author Lin, Tzu-Ping
Chang, Yi-Ting
Lee, Sung-Yuan
Campbell, Mel
Wang, Tien-Chiao
Shen, Shu-Huei
Chung, Hsiao-Jen
Chang, Yen-Hwa
Chiu, Allen W.
Pan, Chin-Chen
Lin, Chi-Hung
Chu, Cheng-Ying
Kung, Hsing-Jien
Cheng, Chia-Yang
Chang, Pei-Ching
author_facet Lin, Tzu-Ping
Chang, Yi-Ting
Lee, Sung-Yuan
Campbell, Mel
Wang, Tien-Chiao
Shen, Shu-Huei
Chung, Hsiao-Jen
Chang, Yen-Hwa
Chiu, Allen W.
Pan, Chin-Chen
Lin, Chi-Hung
Chu, Cheng-Ying
Kung, Hsing-Jien
Cheng, Chia-Yang
Chang, Pei-Ching
author_sort Lin, Tzu-Ping
collection PubMed
description Prostate cancer (PCa) with neuroendocrine differentiation (NED) is tightly associated with hormone refractory PCa (HRPC), an aggressive form of cancer that is nearly impossible to treat. Determining the mechanism of the development of NED may yield novel therapeutic strategies for HRPC. Here, we first demonstrate that repressor element-1 silencing transcription factor (REST), a transcriptional repressor of neuronal genes that has been implicated in androgen-deprivation and IL-6 induced NED, is essential for hypoxia-induced NED of PCa cells. Bioinformatics analysis of transcriptome profiles of REST knockdown during hypoxia treatment demonstrated that REST is a master regulator of hypoxia-induced genes. Gene set enrichment analysis (GSEA) of hypoxia and REST knockdown co-upregulated genes revealed their correlation with HRPC. Consistently, gene ontology (GO) analysis showed that REST reduction potential associated with hypoxia-induced tumorigenesis, NE development, and AMPK pathway activation. Emerging reports have revealed that AMPK activation is a potential mechanism for hypoxia-induced autophagy. In line with this, we demonstrate that REST knockdown alone is capable of activating AMPK and autophagy activation is essential for hypoxia-induced NED of PCa cells. Here, making using of in vitro cell-based assay for NED, we reveal a new role for the transcriptional repressor REST in hypoxia-induced NED and characterized a sequential molecular mechanism downstream of REST resulting in AMPK phosphorylation and autophagy activation, which may be a common signaling pathway leading to NED of PCa.
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spelling pubmed-50419702016-10-10 REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling Lin, Tzu-Ping Chang, Yi-Ting Lee, Sung-Yuan Campbell, Mel Wang, Tien-Chiao Shen, Shu-Huei Chung, Hsiao-Jen Chang, Yen-Hwa Chiu, Allen W. Pan, Chin-Chen Lin, Chi-Hung Chu, Cheng-Ying Kung, Hsing-Jien Cheng, Chia-Yang Chang, Pei-Ching Oncotarget Research Paper Prostate cancer (PCa) with neuroendocrine differentiation (NED) is tightly associated with hormone refractory PCa (HRPC), an aggressive form of cancer that is nearly impossible to treat. Determining the mechanism of the development of NED may yield novel therapeutic strategies for HRPC. Here, we first demonstrate that repressor element-1 silencing transcription factor (REST), a transcriptional repressor of neuronal genes that has been implicated in androgen-deprivation and IL-6 induced NED, is essential for hypoxia-induced NED of PCa cells. Bioinformatics analysis of transcriptome profiles of REST knockdown during hypoxia treatment demonstrated that REST is a master regulator of hypoxia-induced genes. Gene set enrichment analysis (GSEA) of hypoxia and REST knockdown co-upregulated genes revealed their correlation with HRPC. Consistently, gene ontology (GO) analysis showed that REST reduction potential associated with hypoxia-induced tumorigenesis, NE development, and AMPK pathway activation. Emerging reports have revealed that AMPK activation is a potential mechanism for hypoxia-induced autophagy. In line with this, we demonstrate that REST knockdown alone is capable of activating AMPK and autophagy activation is essential for hypoxia-induced NED of PCa cells. Here, making using of in vitro cell-based assay for NED, we reveal a new role for the transcriptional repressor REST in hypoxia-induced NED and characterized a sequential molecular mechanism downstream of REST resulting in AMPK phosphorylation and autophagy activation, which may be a common signaling pathway leading to NED of PCa. Impact Journals LLC 2016-03-28 /pmc/articles/PMC5041970/ /pubmed/27034167 http://dx.doi.org/10.18632/oncotarget.8433 Text en Copyright: © 2016 Lin 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
Lin, Tzu-Ping
Chang, Yi-Ting
Lee, Sung-Yuan
Campbell, Mel
Wang, Tien-Chiao
Shen, Shu-Huei
Chung, Hsiao-Jen
Chang, Yen-Hwa
Chiu, Allen W.
Pan, Chin-Chen
Lin, Chi-Hung
Chu, Cheng-Ying
Kung, Hsing-Jien
Cheng, Chia-Yang
Chang, Pei-Ching
REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
title REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
title_full REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
title_fullStr REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
title_full_unstemmed REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
title_short REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
title_sort rest reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5041970/
https://www.ncbi.nlm.nih.gov/pubmed/27034167
http://dx.doi.org/10.18632/oncotarget.8433
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