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Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe

Glioblastoma ranks among the most lethal of primary brain malignancies, with glioblastoma stem cells (GSCs) at the apex of tumor cellular hierarchies. Here, to discover novel therapeutic GSC targets, we interrogated gene expression profiles from GSCs, differentiated glioblastoma cells (DGCs), and ne...

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Autores principales: Zhang, Guoxin, Dong, Zhen, Gimple, Ryan C., Wolin, Arthur, Wu, Qiulian, Qiu, Zhixin, Wood, Lisa M., Shen, Jia Z., Jiang, Li, Zhao, Linjie, Lv, Deguan, Prager, Briana C., Kim, Leo J.Y., Wang, Xiuxing, Zhang, Lingdi, Anderson, Ryan L., Moore, Jeffrey K., Bao, Shideng, Keller, Thomas H., Lin, Grace, Kang, Congbao, Hamerlik, Petra, Zhao, Rui, Ford, Heide L., Rich, Jeremy N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8504185/
https://www.ncbi.nlm.nih.gov/pubmed/34617969
http://dx.doi.org/10.1084/jem.20202669
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author Zhang, Guoxin
Dong, Zhen
Gimple, Ryan C.
Wolin, Arthur
Wu, Qiulian
Qiu, Zhixin
Wood, Lisa M.
Shen, Jia Z.
Jiang, Li
Zhao, Linjie
Lv, Deguan
Prager, Briana C.
Kim, Leo J.Y.
Wang, Xiuxing
Zhang, Lingdi
Anderson, Ryan L.
Moore, Jeffrey K.
Bao, Shideng
Keller, Thomas H.
Lin, Grace
Kang, Congbao
Hamerlik, Petra
Zhao, Rui
Ford, Heide L.
Rich, Jeremy N.
author_facet Zhang, Guoxin
Dong, Zhen
Gimple, Ryan C.
Wolin, Arthur
Wu, Qiulian
Qiu, Zhixin
Wood, Lisa M.
Shen, Jia Z.
Jiang, Li
Zhao, Linjie
Lv, Deguan
Prager, Briana C.
Kim, Leo J.Y.
Wang, Xiuxing
Zhang, Lingdi
Anderson, Ryan L.
Moore, Jeffrey K.
Bao, Shideng
Keller, Thomas H.
Lin, Grace
Kang, Congbao
Hamerlik, Petra
Zhao, Rui
Ford, Heide L.
Rich, Jeremy N.
author_sort Zhang, Guoxin
collection PubMed
description Glioblastoma ranks among the most lethal of primary brain malignancies, with glioblastoma stem cells (GSCs) at the apex of tumor cellular hierarchies. Here, to discover novel therapeutic GSC targets, we interrogated gene expression profiles from GSCs, differentiated glioblastoma cells (DGCs), and neural stem cells (NSCs), revealing EYA2 as preferentially expressed by GSCs. Targeting EYA2 impaired GSC maintenance and induced cell cycle arrest, apoptosis, and loss of self-renewal. EYA2 displayed novel localization to centrosomes in GSCs, and EYA2 tyrosine (Tyr) phosphatase activity was essential for proper mitotic spindle assembly and survival of GSCs. Inhibition of the EYA2 Tyr phosphatase activity, via genetic or pharmacological means, mimicked EYA2 loss in GSCs in vitro and extended the survival of tumor-bearing mice. Supporting the clinical relevance of these findings, EYA2 portends poor patient prognosis in glioblastoma. Collectively, our data indicate that EYA2 phosphatase function plays selective critical roles in the growth and survival of GSCs, potentially offering a high therapeutic index for EYA2 inhibitors.
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spelling pubmed-85041852022-05-01 Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe Zhang, Guoxin Dong, Zhen Gimple, Ryan C. Wolin, Arthur Wu, Qiulian Qiu, Zhixin Wood, Lisa M. Shen, Jia Z. Jiang, Li Zhao, Linjie Lv, Deguan Prager, Briana C. Kim, Leo J.Y. Wang, Xiuxing Zhang, Lingdi Anderson, Ryan L. Moore, Jeffrey K. Bao, Shideng Keller, Thomas H. Lin, Grace Kang, Congbao Hamerlik, Petra Zhao, Rui Ford, Heide L. Rich, Jeremy N. J Exp Med Article Glioblastoma ranks among the most lethal of primary brain malignancies, with glioblastoma stem cells (GSCs) at the apex of tumor cellular hierarchies. Here, to discover novel therapeutic GSC targets, we interrogated gene expression profiles from GSCs, differentiated glioblastoma cells (DGCs), and neural stem cells (NSCs), revealing EYA2 as preferentially expressed by GSCs. Targeting EYA2 impaired GSC maintenance and induced cell cycle arrest, apoptosis, and loss of self-renewal. EYA2 displayed novel localization to centrosomes in GSCs, and EYA2 tyrosine (Tyr) phosphatase activity was essential for proper mitotic spindle assembly and survival of GSCs. Inhibition of the EYA2 Tyr phosphatase activity, via genetic or pharmacological means, mimicked EYA2 loss in GSCs in vitro and extended the survival of tumor-bearing mice. Supporting the clinical relevance of these findings, EYA2 portends poor patient prognosis in glioblastoma. Collectively, our data indicate that EYA2 phosphatase function plays selective critical roles in the growth and survival of GSCs, potentially offering a high therapeutic index for EYA2 inhibitors. Rockefeller University Press 2021-10-07 /pmc/articles/PMC8504185/ /pubmed/34617969 http://dx.doi.org/10.1084/jem.20202669 Text en © 2021 Zhang et al. https://creativecommons.org/licenses/by-nc-sa/4.0/http://www.rupress.org/terms/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Zhang, Guoxin
Dong, Zhen
Gimple, Ryan C.
Wolin, Arthur
Wu, Qiulian
Qiu, Zhixin
Wood, Lisa M.
Shen, Jia Z.
Jiang, Li
Zhao, Linjie
Lv, Deguan
Prager, Briana C.
Kim, Leo J.Y.
Wang, Xiuxing
Zhang, Lingdi
Anderson, Ryan L.
Moore, Jeffrey K.
Bao, Shideng
Keller, Thomas H.
Lin, Grace
Kang, Congbao
Hamerlik, Petra
Zhao, Rui
Ford, Heide L.
Rich, Jeremy N.
Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
title Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
title_full Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
title_fullStr Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
title_full_unstemmed Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
title_short Targeting EYA2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
title_sort targeting eya2 tyrosine phosphatase activity in glioblastoma stem cells induces mitotic catastrophe
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8504185/
https://www.ncbi.nlm.nih.gov/pubmed/34617969
http://dx.doi.org/10.1084/jem.20202669
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