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The transcriptional network for mesenchymal transformation of brain tumours.

Authors :
Carro, Maria Stella
Wei Keat Lim
Alvarez, Mariano Javier
Bollo, Robert J.
Xudong Zhao
Snyder, Evan Y.
Sulman, Erik P.
Anne, Sandrine L.
Doetsch, Fiona
Colman, Howard
Lasorella, Anna
Aldape, Ken
Califano, Andrea
Iavarone, Antonio
Source :
Nature; 1/21/2010, Vol. 463 Issue 7279, p318-325, 8p, 2 Diagrams, 3 Graphs
Publication Year :
2010

Abstract

The inference of transcriptional networks that regulate transitions into physiological or pathological cellular states remains a central challenge in systems biology. A mesenchymal phenotype is the hallmark of tumour aggressiveness in human malignant glioma, but the regulatory programs responsible for implementing the associated molecular signature are largely unknown. Here we show that reverse-engineering and an unbiased interrogation of a glioma-specific regulatory network reveal the transcriptional module that activates expression of mesenchymal genes in malignant glioma. Two transcription factors (C/EBPβ and STAT3) emerge as synergistic initiators and master regulators of mesenchymal transformation. Ectopic co-expression of C/EBPβ and STAT3 reprograms neural stem cells along the aberrant mesenchymal lineage, whereas elimination of the two factors in glioma cells leads to collapse of the mesenchymal signature and reduces tumour aggressiveness. In human glioma, expression of C/EBPβ and STAT3 correlates with mesenchymal differentiation and predicts poor clinical outcome. These results show that the activation of a small regulatory module is necessary and sufficient to initiate and maintain an aberrant phenotypic state in cancer cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
463
Issue :
7279
Database :
Complementary Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
47623667
Full Text :
https://doi.org/10.1038/nature08712