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EWS-WT1 Oncoprotein Activates Neuronal Reprogramming Factor ASCL1 and Promotes Neural Differentiation.

Authors :
Hong-Jun Kang
Jun Hong Park
WeiPing Chen
Soo Im Kang
Moroz, Krzysztof
Ladanyi, Marc
Sean Bong Lee
Source :
Cancer Research. 8/15/2014, Vol. 74 Issue 16, p4526-4535. 10p.
Publication Year :
2014

Abstract

The oncogenic fusion gene EWS-WT1 is the defining chromosomal translocation in desmoplastic small roundcell tumors (DSRCT), a rare but aggressive soft tissue sarcoma with a high rate of mortality. EWS-WT1 functions as an aberrant transcription factor that drives tumorigenesis, but the mechanistic basis for its pathogenic activity is not well understood. To address this question, we created a transgenic mouse strain that permits physiologic expression of EWS-WT1 under the native murine Ews promoter. EWS-WT1 expression led to a dramatic induction of many neuronal genes in embryonic fibroblasts and primary DSRCT, most notably the neural reprogramming factor ASCL1. Mechanistic analyses demonstrated that EWS-WT1 directly bound the proximal promoter of ASCL1, activating its transcription through multiple WT1-responsive elements. Conversely, EWS- WT1 silencing in DSRCT cells reduced ASCL1 expression and cell viability. Notably, exposure of DSRCT cells to neuronal induction media increased neural gene expression and induced neurite-like projections, both of which were abrogated by silencing EWS-WT1. Taken together, our findings reveal that EWS-WT1 can activate neural gene expression and direct partial neural differentiation via ASCL1, suggesting agents that promote neural differentiation might offer a novel therapeutic approach to treat DSRCT. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00085472
Volume :
74
Issue :
16
Database :
Academic Search Index
Journal :
Cancer Research
Publication Type :
Academic Journal
Accession number :
103285308
Full Text :
https://doi.org/10.1158/0008-5472.CAN-13-3663