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Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells

Brain tumor initiating cells (BTICs) coopt the neuronal high affinity GLUT3 glucose transporter to withstand metabolic stress. Here, we investigated another mechanism critical to brain metabolism, mitochondrial morphology. BTICs displayed mitochondrial fragmentation relative to non-BTICs, suggesting...

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Detalles Bibliográficos
Autores principales: Xie, Qi, Wu, Qiulian, Horbinski, Craig M., Flavahan, William A., Yang, Kailin, Zhou, Wenchao, Dombrowski, Stephen M., Huang, Zhi, Fang, Xiaoguang, Shi, Yu, Ferguson, Ashley N., Kashatus, David F., Bao, Shideng, Rich, Jeremy N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376639/
https://www.ncbi.nlm.nih.gov/pubmed/25730670
http://dx.doi.org/10.1038/nn.3960
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author Xie, Qi
Wu, Qiulian
Horbinski, Craig M.
Flavahan, William A.
Yang, Kailin
Zhou, Wenchao
Dombrowski, Stephen M.
Huang, Zhi
Fang, Xiaoguang
Shi, Yu
Ferguson, Ashley N.
Kashatus, David F.
Bao, Shideng
Rich, Jeremy N.
author_facet Xie, Qi
Wu, Qiulian
Horbinski, Craig M.
Flavahan, William A.
Yang, Kailin
Zhou, Wenchao
Dombrowski, Stephen M.
Huang, Zhi
Fang, Xiaoguang
Shi, Yu
Ferguson, Ashley N.
Kashatus, David F.
Bao, Shideng
Rich, Jeremy N.
author_sort Xie, Qi
collection PubMed
description Brain tumor initiating cells (BTICs) coopt the neuronal high affinity GLUT3 glucose transporter to withstand metabolic stress. Here, we investigated another mechanism critical to brain metabolism, mitochondrial morphology. BTICs displayed mitochondrial fragmentation relative to non-BTICs, suggesting that BTICs have increased mitochondrial fission. The essential mediator of mitochondrial fission, dynamin-related protein 1 (DRP1), was activated in BTICs and inhibited in non-BTICs. Targeting DRP1 using RNA interference or pharmacologic inhibition induced BTIC apoptosis and inhibited tumor growth. Downstream, DRP1 activity regulated the essential metabolic stress sensor, AMP-activated protein kinase (AMPK), and AMPK targeting rescued the effects of DRP1 disruption. Cyclin-dependent kinase 5 (CDK5) phosphorylated DRP1 to increase its activity in BTICs, whereas Ca(2+)–calmodulin-dependent protein kinase 2 (CAMK2) inhibited DRP1 in non-BTICs, suggesting tumor cell differentiation induces a regulatory switch in mitochondrial morphology. DRP1 activation correlates with poor prognosis in glioblastoma, suggesting mitochondrial dynamics may represent a therapeutic target for BTICs.
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spelling pubmed-43766392015-10-01 Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells Xie, Qi Wu, Qiulian Horbinski, Craig M. Flavahan, William A. Yang, Kailin Zhou, Wenchao Dombrowski, Stephen M. Huang, Zhi Fang, Xiaoguang Shi, Yu Ferguson, Ashley N. Kashatus, David F. Bao, Shideng Rich, Jeremy N. Nat Neurosci Article Brain tumor initiating cells (BTICs) coopt the neuronal high affinity GLUT3 glucose transporter to withstand metabolic stress. Here, we investigated another mechanism critical to brain metabolism, mitochondrial morphology. BTICs displayed mitochondrial fragmentation relative to non-BTICs, suggesting that BTICs have increased mitochondrial fission. The essential mediator of mitochondrial fission, dynamin-related protein 1 (DRP1), was activated in BTICs and inhibited in non-BTICs. Targeting DRP1 using RNA interference or pharmacologic inhibition induced BTIC apoptosis and inhibited tumor growth. Downstream, DRP1 activity regulated the essential metabolic stress sensor, AMP-activated protein kinase (AMPK), and AMPK targeting rescued the effects of DRP1 disruption. Cyclin-dependent kinase 5 (CDK5) phosphorylated DRP1 to increase its activity in BTICs, whereas Ca(2+)–calmodulin-dependent protein kinase 2 (CAMK2) inhibited DRP1 in non-BTICs, suggesting tumor cell differentiation induces a regulatory switch in mitochondrial morphology. DRP1 activation correlates with poor prognosis in glioblastoma, suggesting mitochondrial dynamics may represent a therapeutic target for BTICs. 2015-03-02 2015-04 /pmc/articles/PMC4376639/ /pubmed/25730670 http://dx.doi.org/10.1038/nn.3960 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Xie, Qi
Wu, Qiulian
Horbinski, Craig M.
Flavahan, William A.
Yang, Kailin
Zhou, Wenchao
Dombrowski, Stephen M.
Huang, Zhi
Fang, Xiaoguang
Shi, Yu
Ferguson, Ashley N.
Kashatus, David F.
Bao, Shideng
Rich, Jeremy N.
Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells
title Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells
title_full Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells
title_fullStr Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells
title_full_unstemmed Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells
title_short Mitochondrial Control by DRP1 in Brain Tumor Initiating Cells
title_sort mitochondrial control by drp1 in brain tumor initiating cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376639/
https://www.ncbi.nlm.nih.gov/pubmed/25730670
http://dx.doi.org/10.1038/nn.3960
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