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PMID: 25010205 已发表 · epublish 英语

The genomic landscape of the Ewing Sarcoma family of tumors reveals recurrent STAG2 mutation.

PLoS genetics ·第 10 卷 ·第 7 期 ·2015-02-12

Brohl Andrew S, Solomon David A, Chang Wendy, Wang Jianjun, Song Young, Sindiri Sivasish, Patidar Rajesh, Hurd Laura, Chen Li, Shern Jack F, Liao Hongling, Wen Xinyu, Gerard Julia, Kim Jung-Sik, Lopez Guerrero Jose Antonio, Machado Isidro, Wai Daniel H, Picci Piero, Triche Timothy, Horvai Andrew E, Miettinen Markku, Wei Jun S, Catchpool Daniel, Llombart-Bosch Antonio, Waldman Todd, Khan Javed

摘要

The Ewing sarcoma family of tumors (EFT) is a group of highly malignant small round blue cell tumors occurring in children and young adults. We report here the largest genomic survey to date of 101 EFT (65 tumors and 36 cell lines). Using a combination of whole genome sequencing and targeted sequencing approaches, we discover that EFT has a very low mutational burden (0.15 mutations/Mb) but frequent deleterious mutations in the cohesin complex subunit STAG2 (21.5% tumors, 44.4% cell lines), homozygous deletion of CDKN2A (13.8% and 50%) and mutations of TP53 (6.2% and 71.9%). We additionally note an increased prevalence of the BRCA2 K3326X polymorphism in EFT patient samples (7.3%) compared to population data (OR 7.1, p = 0.006). Using whole transcriptome sequencing, we find that 11% of tumors pathologically diagnosed as EFT lack a typical EWSR1 fusion oncogene and that these tumors do not have a characteristic Ewing sarcoma gene expression signature. We identify samples harboring novel fusion genes including FUS-NCATc2 and CIC-FOXO4 that may represent distinct small round blue cell tumor variants. In an independent EFT tissue microarray cohort, we show that STAG2 loss as detected by immunohistochemistry may be associated with more advanced disease (p = 0.15) and a modest decrease in overall survival (p = 0.10). These results significantly advance our understanding of the genomic and molecular underpinnings of Ewing sarcoma and provide a foundation towards further efforts to improve diagnosis, prognosis, and precision therapeutics testing.

文献信息
期刊
PLoS genetics
期刊简称
PLoS Genet
发表日期
2015-02-12
收录日期
2014-07-11
更新日期
2016-10-25
语言
英语
国家/地区
United States
NLM ID
101239074
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