A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine
Amplification of PDGFRα is a common alteration in glioblastoma. In this study, the authors develop a genetically engineered mouse model of GBM based on autocrine, chronic stimulation of overexpressed PDGFR and discover Stathmin1 as an important PDGFRα regulated-protein involved in the response to vi...
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Nature Portfolio
2018
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oai:doaj.org-article:e36e588f60e24fb6aa72e07d8947fc7d2021-12-02T17:31:43ZA PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine10.1038/s41467-018-05036-42041-1723https://doaj.org/article/e36e588f60e24fb6aa72e07d8947fc7d2018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05036-4https://doaj.org/toc/2041-1723Amplification of PDGFRα is a common alteration in glioblastoma. In this study, the authors develop a genetically engineered mouse model of GBM based on autocrine, chronic stimulation of overexpressed PDGFR and discover Stathmin1 as an important PDGFRα regulated-protein involved in the response to vinstabline.Hyun Jung JunVicky A. ApplemanHua-Jun WuChristopher M. RoseJavier J. PinedaAlan T. YeoBethany DelcuzeCharlotte LeeAron GyurisHaihao ZhuSteve WoolfendenAgnieszka BroniszIchiro NakanoEnnio A. ChioccaRoderick T. BronsonKeith L. LigonJann N. SarkariaSteve P. GygiFranziska MichorTimothy J. MitchisonAl CharestNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018) |
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Science Q Hyun Jung Jun Vicky A. Appleman Hua-Jun Wu Christopher M. Rose Javier J. Pineda Alan T. Yeo Bethany Delcuze Charlotte Lee Aron Gyuris Haihao Zhu Steve Woolfenden Agnieszka Bronisz Ichiro Nakano Ennio A. Chiocca Roderick T. Bronson Keith L. Ligon Jann N. Sarkaria Steve P. Gygi Franziska Michor Timothy J. Mitchison Al Charest A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
description |
Amplification of PDGFRα is a common alteration in glioblastoma. In this study, the authors develop a genetically engineered mouse model of GBM based on autocrine, chronic stimulation of overexpressed PDGFR and discover Stathmin1 as an important PDGFRα regulated-protein involved in the response to vinstabline. |
format |
article |
author |
Hyun Jung Jun Vicky A. Appleman Hua-Jun Wu Christopher M. Rose Javier J. Pineda Alan T. Yeo Bethany Delcuze Charlotte Lee Aron Gyuris Haihao Zhu Steve Woolfenden Agnieszka Bronisz Ichiro Nakano Ennio A. Chiocca Roderick T. Bronson Keith L. Ligon Jann N. Sarkaria Steve P. Gygi Franziska Michor Timothy J. Mitchison Al Charest |
author_facet |
Hyun Jung Jun Vicky A. Appleman Hua-Jun Wu Christopher M. Rose Javier J. Pineda Alan T. Yeo Bethany Delcuze Charlotte Lee Aron Gyuris Haihao Zhu Steve Woolfenden Agnieszka Bronisz Ichiro Nakano Ennio A. Chiocca Roderick T. Bronson Keith L. Ligon Jann N. Sarkaria Steve P. Gygi Franziska Michor Timothy J. Mitchison Al Charest |
author_sort |
Hyun Jung Jun |
title |
A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
title_short |
A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
title_full |
A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
title_fullStr |
A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
title_full_unstemmed |
A PDGFRα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
title_sort |
pdgfrα-driven mouse model of glioblastoma reveals a stathmin1-mediated mechanism of sensitivity to vinblastine |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/e36e588f60e24fb6aa72e07d8947fc7d |
work_keys_str_mv |
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