A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways

Glioblastoma (GBM) is classified as proneural (PN), neural, mesenchymal (MES) and classical GBM. Here the authors show that Wnt signalling, miR-125b and miR-20b establish a regulatory circuitry including FZD6 which distinguishes PN from the MES subtype.

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Autores principales: Tianzhi Huang, Angel A. Alvarez, Rajendra P. Pangeni, Craig M. Horbinski, Songjian Lu, Sung-Hak Kim, C. David James, Jeffery J. Raizer, John A. Kessler, Cameron W. Brenann, Erik P. Sulman, Gaetano Finocchiaro, Ming Tan, Ryo Nishikawa, Xinghua Lu, Ichiro Nakano, Bo Hu, Shi-Yuan Cheng
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/b31366b622e74db0ba44d725ba959681
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spelling oai:doaj.org-article:b31366b622e74db0ba44d725ba9596812021-12-02T14:39:54ZA regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways10.1038/ncomms128852041-1723https://doaj.org/article/b31366b622e74db0ba44d725ba9596812016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms12885https://doaj.org/toc/2041-1723Glioblastoma (GBM) is classified as proneural (PN), neural, mesenchymal (MES) and classical GBM. Here the authors show that Wnt signalling, miR-125b and miR-20b establish a regulatory circuitry including FZD6 which distinguishes PN from the MES subtype.Tianzhi HuangAngel A. AlvarezRajendra P. PangeniCraig M. HorbinskiSongjian LuSung-Hak KimC. David JamesJeffery J. RaizerJohn A. KesslerCameron W. BrenannErik P. SulmanGaetano FinocchiaroMing TanRyo NishikawaXinghua LuIchiro NakanoBo HuShi-Yuan ChengNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-16 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tianzhi Huang
Angel A. Alvarez
Rajendra P. Pangeni
Craig M. Horbinski
Songjian Lu
Sung-Hak Kim
C. David James
Jeffery J. Raizer
John A. Kessler
Cameron W. Brenann
Erik P. Sulman
Gaetano Finocchiaro
Ming Tan
Ryo Nishikawa
Xinghua Lu
Ichiro Nakano
Bo Hu
Shi-Yuan Cheng
A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
description Glioblastoma (GBM) is classified as proneural (PN), neural, mesenchymal (MES) and classical GBM. Here the authors show that Wnt signalling, miR-125b and miR-20b establish a regulatory circuitry including FZD6 which distinguishes PN from the MES subtype.
format article
author Tianzhi Huang
Angel A. Alvarez
Rajendra P. Pangeni
Craig M. Horbinski
Songjian Lu
Sung-Hak Kim
C. David James
Jeffery J. Raizer
John A. Kessler
Cameron W. Brenann
Erik P. Sulman
Gaetano Finocchiaro
Ming Tan
Ryo Nishikawa
Xinghua Lu
Ichiro Nakano
Bo Hu
Shi-Yuan Cheng
author_facet Tianzhi Huang
Angel A. Alvarez
Rajendra P. Pangeni
Craig M. Horbinski
Songjian Lu
Sung-Hak Kim
C. David James
Jeffery J. Raizer
John A. Kessler
Cameron W. Brenann
Erik P. Sulman
Gaetano Finocchiaro
Ming Tan
Ryo Nishikawa
Xinghua Lu
Ichiro Nakano
Bo Hu
Shi-Yuan Cheng
author_sort Tianzhi Huang
title A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
title_short A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
title_full A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
title_fullStr A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
title_full_unstemmed A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
title_sort regulatory circuit of mir-125b/mir-20b and wnt signalling controls glioblastoma phenotypes through fzd6-modulated pathways
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/b31366b622e74db0ba44d725ba959681
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