Cargando…

TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma

Glioblastoma Multiforme (GBM) is a lethal primary brain tumor with poor survival lifespan and dismal outcome. Surgical resection of GBM is greatly limited due to the biological significance of brain, giving rise to tumor relapse in GBM patients. Transactive response DNA binding protein-43 (TDP-43) i...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Tzu-Wei, Chen, Ming-Teh, Lin, Liang-Ting, Huang, Pin-I, Lo, Wen-Liang, Yang, Yi-Ping, Lu, Kai-Hsi, Chen, Yi-Wei, Chiou, Shih-Hwa, Wu, Cheng-Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5593587/
https://www.ncbi.nlm.nih.gov/pubmed/28915616
http://dx.doi.org/10.18632/oncotarget.17979
_version_ 1783263067436482560
author Lin, Tzu-Wei
Chen, Ming-Teh
Lin, Liang-Ting
Huang, Pin-I
Lo, Wen-Liang
Yang, Yi-Ping
Lu, Kai-Hsi
Chen, Yi-Wei
Chiou, Shih-Hwa
Wu, Cheng-Wen
author_facet Lin, Tzu-Wei
Chen, Ming-Teh
Lin, Liang-Ting
Huang, Pin-I
Lo, Wen-Liang
Yang, Yi-Ping
Lu, Kai-Hsi
Chen, Yi-Wei
Chiou, Shih-Hwa
Wu, Cheng-Wen
author_sort Lin, Tzu-Wei
collection PubMed
description Glioblastoma Multiforme (GBM) is a lethal primary brain tumor with poor survival lifespan and dismal outcome. Surgical resection of GBM is greatly limited due to the biological significance of brain, giving rise to tumor relapse in GBM patients. Transactive response DNA binding protein-43 (TDP-43) is a DNA/RNA-binding protein known for causing neurodegenerative diseases through post-translational modification; but little is known about its involvement in cancer development. In this study, we found that nutrient deprivation in GBM cell lines elevated TDP-43 expression by a mechanism of evasion from ubiquitin-dependent proteolytic pathway, and subsequently activated the autophagy process. Exogenous overexpression of TDP-43 consistently activated autophagy and suppressed stress-induced apoptosis. The inhibition of autophagy in TDP-43-overexpressing cells effectively increased the apoptotic population under nutrition shortage. Furthermore, we demonstrated that HDAC6 was involved in the activation of autophagy in TDP-43-overexpressing GBM cell lines. The treatment with SAHA, a universal HDAC inhibitor, significantly reduced TDP-43-mediated anti-apoptotic effect. Additionally, the results of immunohistochemistry showed that TDP-43 and HDAC6 collaborated in GBM-tumor lesions and negatively correlated with the relapse-free survival of GBM patients. Taken together, our results suggest that the TDP-43-HDAC6 signaling axis functions as a stress responsive pathway in GBM tumorigenesis and combats nutrient deprivation stress via activating autophagy, while inhibition of HDAC6 overpowers the pathway and provides a novel therapeutic strategy against GBM.
format Online
Article
Text
id pubmed-5593587
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-55935872017-09-14 TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma Lin, Tzu-Wei Chen, Ming-Teh Lin, Liang-Ting Huang, Pin-I Lo, Wen-Liang Yang, Yi-Ping Lu, Kai-Hsi Chen, Yi-Wei Chiou, Shih-Hwa Wu, Cheng-Wen Oncotarget Research Paper Glioblastoma Multiforme (GBM) is a lethal primary brain tumor with poor survival lifespan and dismal outcome. Surgical resection of GBM is greatly limited due to the biological significance of brain, giving rise to tumor relapse in GBM patients. Transactive response DNA binding protein-43 (TDP-43) is a DNA/RNA-binding protein known for causing neurodegenerative diseases through post-translational modification; but little is known about its involvement in cancer development. In this study, we found that nutrient deprivation in GBM cell lines elevated TDP-43 expression by a mechanism of evasion from ubiquitin-dependent proteolytic pathway, and subsequently activated the autophagy process. Exogenous overexpression of TDP-43 consistently activated autophagy and suppressed stress-induced apoptosis. The inhibition of autophagy in TDP-43-overexpressing cells effectively increased the apoptotic population under nutrition shortage. Furthermore, we demonstrated that HDAC6 was involved in the activation of autophagy in TDP-43-overexpressing GBM cell lines. The treatment with SAHA, a universal HDAC inhibitor, significantly reduced TDP-43-mediated anti-apoptotic effect. Additionally, the results of immunohistochemistry showed that TDP-43 and HDAC6 collaborated in GBM-tumor lesions and negatively correlated with the relapse-free survival of GBM patients. Taken together, our results suggest that the TDP-43-HDAC6 signaling axis functions as a stress responsive pathway in GBM tumorigenesis and combats nutrient deprivation stress via activating autophagy, while inhibition of HDAC6 overpowers the pathway and provides a novel therapeutic strategy against GBM. Impact Journals LLC 2017-05-18 /pmc/articles/PMC5593587/ /pubmed/28915616 http://dx.doi.org/10.18632/oncotarget.17979 Text en Copyright: © 2017 Lin et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Lin, Tzu-Wei
Chen, Ming-Teh
Lin, Liang-Ting
Huang, Pin-I
Lo, Wen-Liang
Yang, Yi-Ping
Lu, Kai-Hsi
Chen, Yi-Wei
Chiou, Shih-Hwa
Wu, Cheng-Wen
TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
title TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
title_full TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
title_fullStr TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
title_full_unstemmed TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
title_short TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
title_sort tdp-43/hdac6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5593587/
https://www.ncbi.nlm.nih.gov/pubmed/28915616
http://dx.doi.org/10.18632/oncotarget.17979
work_keys_str_mv AT lintzuwei tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT chenmingteh tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT linliangting tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT huangpini tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT lowenliang tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT yangyiping tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT lukaihsi tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT chenyiwei tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT chioushihhwa tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma
AT wuchengwen tdp43hdac6axispromotedtumorprogressionandregulatednutrientdeprivationinducedautophagyinglioblastoma