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EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties

Diffuse infiltrative invasion is a major cause for the dismal prognosis of glioblastoma (GBM), but the underlying mechanisms remain incompletely understood. Using human glioblastoma stem cells (GSCs) that recapitulate the invasive propensity of primary GBM, we find that EphA2 critically regulates GB...

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Autores principales: Miao, Hui, Gale, Nickolas W., Guo, Hong, Qian, Juan, Petty, Aaron, Kaspar, James, Murphy, Andrew J., Valenzuela, David M., Yancopoulos, George, Hambardzumyan, Dolores, Lathia, Justin D., Rich, Jeremy N., Lee, Jeongwu, Wang, Bingcheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4119862/
https://www.ncbi.nlm.nih.gov/pubmed/24488013
http://dx.doi.org/10.1038/onc.2013.590
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author Miao, Hui
Gale, Nickolas W.
Guo, Hong
Qian, Juan
Petty, Aaron
Kaspar, James
Murphy, Andrew J.
Valenzuela, David M.
Yancopoulos, George
Hambardzumyan, Dolores
Lathia, Justin D.
Rich, Jeremy N.
Lee, Jeongwu
Wang, Bingcheng
author_facet Miao, Hui
Gale, Nickolas W.
Guo, Hong
Qian, Juan
Petty, Aaron
Kaspar, James
Murphy, Andrew J.
Valenzuela, David M.
Yancopoulos, George
Hambardzumyan, Dolores
Lathia, Justin D.
Rich, Jeremy N.
Lee, Jeongwu
Wang, Bingcheng
author_sort Miao, Hui
collection PubMed
description Diffuse infiltrative invasion is a major cause for the dismal prognosis of glioblastoma (GBM), but the underlying mechanisms remain incompletely understood. Using human glioblastoma stem cells (GSCs) that recapitulate the invasive propensity of primary GBM, we find that EphA2 critically regulates GBM invasion in vivo. EphA2 was expressed in all seven GSC lines examined, and overexpression of EphA2 enhanced intracranial invasion. The effects required Akt-mediated phosphorylation of EphA2 on serine 897. In vitro the Akt-EphA2 signaling axis is maintained in the absence of ephrin-A ligands and is disrupted upon ligand stimulation. To test whether ephrin-As in tumor microenvironment can regulate GSC invasion, the newly established Efna1;Efna3;Efna4 triple knockout mice (TKO) were used in an ex vivo brain slice invasion assay. We observed significantly increased GSC invasion through the brain slices of TKO mice relative to wild type littermates. Mechanistically EphA2 knockdown suppressed stem properties of GSCs, causing diminished self-renewal, reduced stem marker expression and decreased tumorigenicity. In a subset of GSCs, the reduced stem properties were associated with lower Sox2 expression. Overexpression of EphA2 promoted stem properties in a kinase-independent manner and increased Sox2 expression. In addition to suppressing invasion, disrupting Akt-EphA2 crosstalk attenuated stem marker expression and neurosphere formation while having minimal effects on tumorigenesis, suggesting that the Akt-EphA2 signaling axis contributes to the stem properties. Taken together, the results show that EphA2 endows invasiveness of GSCs in vivo in cooperation with Akt and contributes to the maintenance of stem properties.
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spelling pubmed-41198622015-07-29 EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties Miao, Hui Gale, Nickolas W. Guo, Hong Qian, Juan Petty, Aaron Kaspar, James Murphy, Andrew J. Valenzuela, David M. Yancopoulos, George Hambardzumyan, Dolores Lathia, Justin D. Rich, Jeremy N. Lee, Jeongwu Wang, Bingcheng Oncogene Article Diffuse infiltrative invasion is a major cause for the dismal prognosis of glioblastoma (GBM), but the underlying mechanisms remain incompletely understood. Using human glioblastoma stem cells (GSCs) that recapitulate the invasive propensity of primary GBM, we find that EphA2 critically regulates GBM invasion in vivo. EphA2 was expressed in all seven GSC lines examined, and overexpression of EphA2 enhanced intracranial invasion. The effects required Akt-mediated phosphorylation of EphA2 on serine 897. In vitro the Akt-EphA2 signaling axis is maintained in the absence of ephrin-A ligands and is disrupted upon ligand stimulation. To test whether ephrin-As in tumor microenvironment can regulate GSC invasion, the newly established Efna1;Efna3;Efna4 triple knockout mice (TKO) were used in an ex vivo brain slice invasion assay. We observed significantly increased GSC invasion through the brain slices of TKO mice relative to wild type littermates. Mechanistically EphA2 knockdown suppressed stem properties of GSCs, causing diminished self-renewal, reduced stem marker expression and decreased tumorigenicity. In a subset of GSCs, the reduced stem properties were associated with lower Sox2 expression. Overexpression of EphA2 promoted stem properties in a kinase-independent manner and increased Sox2 expression. In addition to suppressing invasion, disrupting Akt-EphA2 crosstalk attenuated stem marker expression and neurosphere formation while having minimal effects on tumorigenesis, suggesting that the Akt-EphA2 signaling axis contributes to the stem properties. Taken together, the results show that EphA2 endows invasiveness of GSCs in vivo in cooperation with Akt and contributes to the maintenance of stem properties. 2014-02-03 2015-01-29 /pmc/articles/PMC4119862/ /pubmed/24488013 http://dx.doi.org/10.1038/onc.2013.590 Text en Users may view, print, copy, download and 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
Miao, Hui
Gale, Nickolas W.
Guo, Hong
Qian, Juan
Petty, Aaron
Kaspar, James
Murphy, Andrew J.
Valenzuela, David M.
Yancopoulos, George
Hambardzumyan, Dolores
Lathia, Justin D.
Rich, Jeremy N.
Lee, Jeongwu
Wang, Bingcheng
EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties
title EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties
title_full EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties
title_fullStr EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties
title_full_unstemmed EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties
title_short EphA2 Promotes Infiltrative Invasion of Glioma Stem Cells in vivo through Crosstalk with Akt and Regulates Stem Properties
title_sort epha2 promotes infiltrative invasion of glioma stem cells in vivo through crosstalk with akt and regulates stem properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4119862/
https://www.ncbi.nlm.nih.gov/pubmed/24488013
http://dx.doi.org/10.1038/onc.2013.590
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