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  • An aberrant transcription factor network essential for Wnt signaling and stem cell maintenance in glioblastoma.

An aberrant transcription factor network essential for Wnt signaling and stem cell maintenance in glioblastoma.

Cell reports (2013-05-28)
Esther Rheinbay, Mario L Suvà, Shawn M Gillespie, Hiroaki Wakimoto, Anoop P Patel, Mohammad Shahid, Ozgur Oksuz, Samuel D Rabkin, Robert L Martuza, Miguel N Rivera, David N Louis, Simon Kasif, Andrew S Chi, Bradley E Bernstein
ZUSAMMENFASSUNG

Glioblastoma (GBM) is thought to be driven by a subpopulation of cancer stem cells (CSCs) that self-renew and recapitulate tumor heterogeneity yet remain poorly understood. Here, we present a comparative analysis of chromatin state in GBM CSCs that reveals widespread activation of genes normally held in check by Polycomb repressors. These activated targets include a large set of developmental transcription factors (TFs) whose coordinated activation is unique to the CSCs. We demonstrate that a critical factor in the set, ASCL1, activates Wnt signaling by repressing the negative regulator DKK1. We show that ASCL1 is essential for the maintenance and in vivo tumorigenicity of GBM CSCs. Genome-wide binding profiles for ASCL1 and the Wnt effector LEF-1 provide mechanistic insight and suggest widespread interactions between the TF module and the signaling pathway. Our findings demonstrate regulatory connections among ASCL1, Wnt signaling, and collaborating TFs that are essential for the maintenance and tumorigenicity of GBM CSCs.

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Anti-trimethyl-Histone H3 (Lys27) Antikörper, Upstate®, from rabbit
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Anti-trimethyl-Histon H3-(Lys4-)Antikörper, Upstate®, from rabbit
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Neural Stem Cell Marker Characterization Kit, The Neural Stem Cell Characterization Kit contains two molecular markers, Nestin & Sox 2 that are frequently used to identify neural stem/progenitor cells.
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Charakterisierungskit für neuronale Stammzellen des Menschen, The Human Neural Stem Cell Characterization Kit contains three molecular markers, Nestin, Sox 2 & Musashi that are frequently used to identify neural stem/progenitor cells.