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Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma

Given the involvement of telomerase activation and dysregulated metabolism in glioma progression, the connection between these two critical players was investigated. Pharmacological inhibition of human Telomerase reverse transcriptase (hTERT) by Costunolide induced glioma cell apoptosis in a reactiv...

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Autores principales: Ahmad, F, Dixit, D, Sharma, V, Kumar, A, Joshi, S D, Sarkar, C, Sen, E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4917655/
https://www.ncbi.nlm.nih.gov/pubmed/27148686
http://dx.doi.org/10.1038/cddis.2016.117
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author Ahmad, F
Dixit, D
Sharma, V
Kumar, A
Joshi, S D
Sarkar, C
Sen, E
author_facet Ahmad, F
Dixit, D
Sharma, V
Kumar, A
Joshi, S D
Sarkar, C
Sen, E
author_sort Ahmad, F
collection PubMed
description Given the involvement of telomerase activation and dysregulated metabolism in glioma progression, the connection between these two critical players was investigated. Pharmacological inhibition of human Telomerase reverse transcriptase (hTERT) by Costunolide induced glioma cell apoptosis in a reactive oxygen species (ROS)-dependent manner. Costunolide induced an ROS-dependent increase in p53 abrogated telomerase activity. Costunolide decreased Nrf2 level; and ectopic Nrf2 expression decreased Costunolide-induced ROS generation. While TERT knock-down abrogated Nrf2 levels, overexpression of Nrf2 increased TERT expression. Inhibition of hTERT either by Costunolide, or by siRNA or dominant-negative hTERT (DN-hTERT) abrogated (i) expression of Glucose-6-phosphate dehydrogenase (G6PD) and Transketolase (TKT) – two major nodes in the pentose phosphate (PPP) pathway; and (ii) phosphorylation of glycogen synthase (GS). hTERT knock-down decreased TKT activity and increased glycogen accumulation. Interestingly, siRNA-mediated knock-down of TKT elevated glycogen accumulation. Coherent with the in vitro findings, Costunolide reduced tumor burden in heterotypic xenograft glioma mouse model. Costunolide-treated tumors exhibited diminished TKT activity, heightened glycogen accumulation, and increased senescence. Importantly, glioblastoma multiforme (GBM) patient tumors bearing TERT promoter mutations (C228T and C250T) known to be associated with increased telomerase activity; exhibited elevated Nrf2 and TKT expression and decreased glycogen accumulation. Taken together, our findings highlight the previously unknown (i) role of telomerase in the regulation of PPP and glycogen accumulation and (ii) the involvement of Nrf2-TERT loop in maintaining oxidative defense responses in glioma cells.
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spelling pubmed-49176552016-07-07 Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma Ahmad, F Dixit, D Sharma, V Kumar, A Joshi, S D Sarkar, C Sen, E Cell Death Dis Original Article Given the involvement of telomerase activation and dysregulated metabolism in glioma progression, the connection between these two critical players was investigated. Pharmacological inhibition of human Telomerase reverse transcriptase (hTERT) by Costunolide induced glioma cell apoptosis in a reactive oxygen species (ROS)-dependent manner. Costunolide induced an ROS-dependent increase in p53 abrogated telomerase activity. Costunolide decreased Nrf2 level; and ectopic Nrf2 expression decreased Costunolide-induced ROS generation. While TERT knock-down abrogated Nrf2 levels, overexpression of Nrf2 increased TERT expression. Inhibition of hTERT either by Costunolide, or by siRNA or dominant-negative hTERT (DN-hTERT) abrogated (i) expression of Glucose-6-phosphate dehydrogenase (G6PD) and Transketolase (TKT) – two major nodes in the pentose phosphate (PPP) pathway; and (ii) phosphorylation of glycogen synthase (GS). hTERT knock-down decreased TKT activity and increased glycogen accumulation. Interestingly, siRNA-mediated knock-down of TKT elevated glycogen accumulation. Coherent with the in vitro findings, Costunolide reduced tumor burden in heterotypic xenograft glioma mouse model. Costunolide-treated tumors exhibited diminished TKT activity, heightened glycogen accumulation, and increased senescence. Importantly, glioblastoma multiforme (GBM) patient tumors bearing TERT promoter mutations (C228T and C250T) known to be associated with increased telomerase activity; exhibited elevated Nrf2 and TKT expression and decreased glycogen accumulation. Taken together, our findings highlight the previously unknown (i) role of telomerase in the regulation of PPP and glycogen accumulation and (ii) the involvement of Nrf2-TERT loop in maintaining oxidative defense responses in glioma cells. Nature Publishing Group 2016-05 2016-05-05 /pmc/articles/PMC4917655/ /pubmed/27148686 http://dx.doi.org/10.1038/cddis.2016.117 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Ahmad, F
Dixit, D
Sharma, V
Kumar, A
Joshi, S D
Sarkar, C
Sen, E
Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma
title Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma
title_full Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma
title_fullStr Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma
title_full_unstemmed Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma
title_short Nrf2-driven TERT regulates pentose phosphate pathway in glioblastoma
title_sort nrf2-driven tert regulates pentose phosphate pathway in glioblastoma
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4917655/
https://www.ncbi.nlm.nih.gov/pubmed/27148686
http://dx.doi.org/10.1038/cddis.2016.117
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