Cargando…
Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence
Glioblastoma stem cells (GSC) are a significant cell model for explaining brain tumor recurrence. However, mechanisms underlying their radiochemoresistance remain obscure. Here we show that most clonogenic cells in GSC cultures are sensitive to radiation treatment (RT) with or without temozolomide (...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3832364/ https://www.ncbi.nlm.nih.gov/pubmed/24260384 http://dx.doi.org/10.1371/journal.pone.0080397 |
_version_ | 1782291663341748224 |
---|---|
author | Ye, Fei Zhang, Yibei Liu, Yue Yamada, Kazunari Tso, Jonathan L. Menjivar, Jimmy C. Tian, Jane Y. Yong, William H. Schaue, Dörthe Mischel, Paul S. Cloughesy, Timothy F. Nelson, Stanley F. Liau, Linda M. McBride, William Tso, Cho-Lea |
author_facet | Ye, Fei Zhang, Yibei Liu, Yue Yamada, Kazunari Tso, Jonathan L. Menjivar, Jimmy C. Tian, Jane Y. Yong, William H. Schaue, Dörthe Mischel, Paul S. Cloughesy, Timothy F. Nelson, Stanley F. Liau, Linda M. McBride, William Tso, Cho-Lea |
author_sort | Ye, Fei |
collection | PubMed |
description | Glioblastoma stem cells (GSC) are a significant cell model for explaining brain tumor recurrence. However, mechanisms underlying their radiochemoresistance remain obscure. Here we show that most clonogenic cells in GSC cultures are sensitive to radiation treatment (RT) with or without temozolomide (TMZ). Only a few single cells survive treatment and regain their self-repopulating capacity. Cells re-populated from treatment-resistant GSC clones contain more clonogenic cells compared to those grown from treatment-sensitive GSC clones, and repeated treatment cycles rapidly enriched clonogenic survival. When compared to sensitive clones, resistant clones exhibited slower tumor development in animals. Upregulated genes identified in resistant clones via comparative expression microarray analysis characterized cells under metabolic stress, including blocked glucose uptake, impaired insulin/Akt signaling, enhanced lipid catabolism and oxidative stress, and suppressed growth and inflammation. Moreover, many upregulated genes highlighted maintenance and repair activities, including detoxifying lipid peroxidation products, activating lysosomal autophagy/ubiquitin-proteasome pathways, and enhancing telomere maintenance and DNA repair, closely resembling the anti-aging effects of caloric/glucose restriction (CR/GR), a nutritional intervention that is known to increase lifespan and stress resistance in model organisms. Although treatment–introduced genetic mutations were detected in resistant clones, all resistant and sensitive clones were subclassified to either proneural (PN) or mesenchymal (MES) glioblastoma subtype based on their expression profiles. Functional assays demonstrated the association of treatment resistance with energy stress, including reduced glucose uptake, fatty acid oxidation (FAO)-dependent ATP maintenance, elevated reactive oxygen species (ROS) production and autophagic activity, and increased AMPK activity and NAD(+) levels accompanied by upregulated mRNA levels of SIRT1/PGC-1α axis and DNA repair genes. These data support the view that treatment resistance may arise from quiescent GSC exhibiting a GR-like phenotype, and suggest that targeting stress response pathways of resistant GSC may provide a novel strategy in combination with standard treatment for glioblastoma. |
format | Online Article Text |
id | pubmed-3832364 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-38323642013-11-20 Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence Ye, Fei Zhang, Yibei Liu, Yue Yamada, Kazunari Tso, Jonathan L. Menjivar, Jimmy C. Tian, Jane Y. Yong, William H. Schaue, Dörthe Mischel, Paul S. Cloughesy, Timothy F. Nelson, Stanley F. Liau, Linda M. McBride, William Tso, Cho-Lea PLoS One Research Article Glioblastoma stem cells (GSC) are a significant cell model for explaining brain tumor recurrence. However, mechanisms underlying their radiochemoresistance remain obscure. Here we show that most clonogenic cells in GSC cultures are sensitive to radiation treatment (RT) with or without temozolomide (TMZ). Only a few single cells survive treatment and regain their self-repopulating capacity. Cells re-populated from treatment-resistant GSC clones contain more clonogenic cells compared to those grown from treatment-sensitive GSC clones, and repeated treatment cycles rapidly enriched clonogenic survival. When compared to sensitive clones, resistant clones exhibited slower tumor development in animals. Upregulated genes identified in resistant clones via comparative expression microarray analysis characterized cells under metabolic stress, including blocked glucose uptake, impaired insulin/Akt signaling, enhanced lipid catabolism and oxidative stress, and suppressed growth and inflammation. Moreover, many upregulated genes highlighted maintenance and repair activities, including detoxifying lipid peroxidation products, activating lysosomal autophagy/ubiquitin-proteasome pathways, and enhancing telomere maintenance and DNA repair, closely resembling the anti-aging effects of caloric/glucose restriction (CR/GR), a nutritional intervention that is known to increase lifespan and stress resistance in model organisms. Although treatment–introduced genetic mutations were detected in resistant clones, all resistant and sensitive clones were subclassified to either proneural (PN) or mesenchymal (MES) glioblastoma subtype based on their expression profiles. Functional assays demonstrated the association of treatment resistance with energy stress, including reduced glucose uptake, fatty acid oxidation (FAO)-dependent ATP maintenance, elevated reactive oxygen species (ROS) production and autophagic activity, and increased AMPK activity and NAD(+) levels accompanied by upregulated mRNA levels of SIRT1/PGC-1α axis and DNA repair genes. These data support the view that treatment resistance may arise from quiescent GSC exhibiting a GR-like phenotype, and suggest that targeting stress response pathways of resistant GSC may provide a novel strategy in combination with standard treatment for glioblastoma. Public Library of Science 2013-11-18 /pmc/articles/PMC3832364/ /pubmed/24260384 http://dx.doi.org/10.1371/journal.pone.0080397 Text en © 2013 Ye et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited. |
spellingShingle | Research Article Ye, Fei Zhang, Yibei Liu, Yue Yamada, Kazunari Tso, Jonathan L. Menjivar, Jimmy C. Tian, Jane Y. Yong, William H. Schaue, Dörthe Mischel, Paul S. Cloughesy, Timothy F. Nelson, Stanley F. Liau, Linda M. McBride, William Tso, Cho-Lea Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence |
title | Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence |
title_full | Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence |
title_fullStr | Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence |
title_full_unstemmed | Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence |
title_short | Protective Properties of Radio-Chemoresistant Glioblastoma Stem Cell Clones Are Associated with Metabolic Adaptation to Reduced Glucose Dependence |
title_sort | protective properties of radio-chemoresistant glioblastoma stem cell clones are associated with metabolic adaptation to reduced glucose dependence |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3832364/ https://www.ncbi.nlm.nih.gov/pubmed/24260384 http://dx.doi.org/10.1371/journal.pone.0080397 |
work_keys_str_mv | AT yefei protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT zhangyibei protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT liuyue protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT yamadakazunari protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT tsojonathanl protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT menjivarjimmyc protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT tianjaney protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT yongwilliamh protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT schauedorthe protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT mischelpauls protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT cloughesytimothyf protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT nelsonstanleyf protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT liaulindam protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT mcbridewilliam protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence AT tsocholea protectivepropertiesofradiochemoresistantglioblastomastemcellclonesareassociatedwithmetabolicadaptationtoreducedglucosedependence |