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Inactivation of Ezh2Upregulates Gfi1and Drives Aggressive Myc-Driven Group 3 Medulloblastoma

Authors :
Vo, BaoHan T.
Li, Chunliang
Morgan, Marc A.
Theurillat, Ilan
Finkelstein, David
Wright, Shaela
Hyle, Judith
Smith, Stephanie M.C.
Fan, Yiping
Wang, Yong-Dong
Wu, Gang
Orr, Brent A.
Northcott, Paul A.
Shilatifard, Ali
Sherr, Charles J.
Roussel, Martine F.
Source :
Cell Reports; March 2017, Vol. 18 Issue: 12 p2907-2917, 11p
Publication Year :
2017

Abstract

The most aggressive of four medulloblastoma (MB) subgroups are cMyc-driven group 3 (G3) tumors, some of which overexpress EZH2, the histone H3K27 mono-, di-, and trimethylase of polycomb-repressive complex 2. Ezh2 has a context-dependent role in different cancers as an oncogene or tumor suppressor and retards tumor progression in a mouse model of G3 MB. Engineered deletions of Ezh2in G3 MBs by gene editing nucleases accelerated tumorigenesis, whereas Ezh2 re-expression reversed attendant histone modifications and slowed tumor progression. Candidate oncogenic drivers suppressed by Ezh2 included Gfi1, a proto-oncogene frequently activated in human G3 MBs. Gfi1disruption antagonized the tumor-promoting effects of Ezh2loss; conversely, Gfi1 overexpression collaborated with Myc to bypass effects of Trp53 inactivation in driving MB progression in primary cerebellar neuronal progenitors. Although negative regulation of Gfi1by Ezh2 may restrain MB development, Gfi1 activation can bypass these effects.

Details

Language :
English
ISSN :
22111247
Volume :
18
Issue :
12
Database :
Supplemental Index
Journal :
Cell Reports
Publication Type :
Periodical
Accession number :
ejs41555940
Full Text :
https://doi.org/10.1016/j.celrep.2017.02.073