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A De Novo Mouse Model of C11orf95-RELA Fusion-Driven Ependymoma Identifies Driver Functions in Addition to NF-κB.

Published version
Peer-reviewed

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Authors

Ozawa, Tatsuya 
Arora, Sonali 
Szulzewsky, Frank 
Juric-Sekhar, Gordana 
Miyajima, Yoshiteru 

Abstract

The majority of supratentorial ependymomas (ST-ependymomas) have few mutations but frequently display chromothripsis of chromosome 11q that generates a fusion between C11orf95 and RELA (RELAFUS). Neural stem cells transduced with RELAFUSex vivo form ependymomas when implanted in the brain. These tumors display enhanced NF-κB signaling, suggesting that this aberrant signal is the principal mechanism of oncogenesis. However, it is not known whether RELAFUS is sufficient to drive de novo ependymoma tumorigenesis in the brain and, if so, whether these tumors also arise from neural stem cells. We show that RELAFUS drives ST-ependymoma formation from periventricular neural stem cells in mice and that RELAFUS-induced tumorigenesis is likely dependent on a series of cell signaling pathways in addition to NF-κB.

Description

Keywords

C11orf95, NF-κB signaling, RCAS/tv-a system, RELA, ependymoma, fusion gene, mouse model

Journal Title

Cell Reports

Conference Name

Journal ISSN

2211-1247
2211-1247

Volume Title

23

Publisher

Elsevier
Sponsorship
National Cancer Institute (R01CA129541)
National Cancer Institute (P01CA096832)