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Whole-genome sequencing identifies genetic alterations in pediatric low-grade gliomas

Authors :
Jing Ma
Sheila A. Shurtleff
Xiang Chen
David Zhao
Kristy Boggs
Gang Wu
Jinjun Cheng
Lei Wei
Heather L. Mulder
Guangchun Song
Charles Lu
Lucinda Fulton
Erin Hedlund
John Easton
Panduka Nagahawatte
Matthew Parker
Ryan P. Lee
Richard K. Wilson
Chunlao Tang
Kerri Ochoa
James R. Downing
Denise Sheer
Michael Rusch
Claudia P. Miller
Yongjin Li
Cyriac Kandoth
Chandanamali Punchihewa
Elaine R. Mardis
Bo Tang
David W. Ellison
Bhavin Vadodaria
Jianmin Wang
Charles G. Mullighan
Suzanne J. Baker
Richard J. Gilbertson
Ibrahim Qaddoumi
Richard W. Kriwacki
Jared Becksfort
Robert Huether
F.A. Boop
Robert S. Fulton
Jinghui Zhang
Wilda Orisme
David J. Dooling
Amar Gajjar
James Dalton
Li Ding
Ruth G. Tatevossian
Source :
Nature genetics
Publication Year :
2013
Publisher :
Springer Science and Business Media LLC, 2013.

Abstract

The most common pediatric brain tumors are low-grade gliomas (LGGs). We used whole-genome sequencing to identify multiple new genetic alterations involving BRAF, RAF1, FGFR1, MYB, MYBL1 and genes with histone-related functions, including H3F3A and ATRX, in 39 LGGs and low-grade glioneuronal tumors (LGGNTs). Only a single non-silent somatic alteration was detected in 24 of 39 (62%) tumors. Intragenic duplications of the portion of FGFR1 encoding the tyrosine kinase domain (TKD) and rearrangements of MYB were recurrent and mutually exclusive in 53% of grade II diffuse LGGs. Transplantation of Trp53-null neonatal astrocytes expressing FGFR1 with the duplication involving the TKD into the brains of nude mice generated high-grade astrocytomas with short latency and 100% penetrance. FGFR1 with the duplication induced FGFR1 autophosphorylation and upregulation of the MAPK/ERK and PI3K pathways, which could be blocked by specific inhibitors. Focusing on the therapeutically challenging diffuse LGGs, our study of 151 tumors has discovered genetic alterations and potential therapeutic targets across the entire range of pediatric LGGs and LGGNTs.

Details

ISSN :
15461718 and 10614036
Volume :
45
Database :
OpenAIRE
Journal :
Nature Genetics
Accession number :
edsair.doi.dedup.....1db7a466facbbd27337ee5ec685e0bdb
Full Text :
https://doi.org/10.1038/ng.2611