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PMID: 24436047 已发表 · ppublish 英语

Comprehensive genomic analysis of rhabdomyosarcoma reveals a landscape of alterations affecting a common genetic axis in fusion-positive and fusion-negative tumors.

Cancer discovery ·第 4 卷 ·第 2 期 ·2014-09-30

Shern Jack F, Chen Li, Chmielecki Juliann, Wei Jun S, Patidar Rajesh, Rosenberg Mara, Ambrogio Lauren, Auclair Daniel, Wang Jianjun, Song Young K, Tolman Catherine, Hurd Laura, Liao Hongling, Zhang Shile, Bogen Dominik, Brohl Andrew S, Sindiri Sivasish, Catchpoole Daniel, Badgett Thomas, Getz Gad, Mora Jaume, Anderson James R, Skapek Stephen X, Barr Frederic G, Meyerson Matthew, Hawkins Douglas S, Khan Javed

摘要

Despite gains in survival, outcomes for patients with metastatic or recurrent rhabdomyosarcoma remain dismal. In a collaboration between the National Cancer Institute, Children's Oncology Group, and Broad Institute, we performed whole-genome, whole-exome, and transcriptome sequencing to characterize the landscape of somatic alterations in 147 tumor/normal pairs. Two genotypes are evident in rhabdomyosarcoma tumors: those characterized by the PAX3 or PAX7 fusion and those that lack these fusions but harbor mutations in key signaling pathways. The overall burden of somatic mutations in rhabdomyosarcoma is relatively low, especially in tumors that harbor a PAX3/7 gene fusion. In addition to previously reported mutations in NRAS, KRAS, HRAS, FGFR4, PIK3CA, and CTNNB1, we found novel recurrent mutations in FBXW7 and BCOR, providing potential new avenues for therapeutic intervention. Furthermore, alteration of the receptor tyrosine kinase/RAS/PIK3CA axis affects 93% of cases, providing a framework for genomics-directed therapies that might improve outcomes for patients with rhabdomyosarcoma.,This is the most comprehensive genomic analysis of rhabdomyosarcoma to date. Despite a relatively low mutation rate, multiple genes were recurrently altered, including NRAS, KRAS, HRAS, FGFR4, PIK3CA, CTNNB1, FBXW7, and BCOR. In addition, a majority of rhabdomyosarcoma tumors alter the receptor tyrosine kinase/RAS/PIK3CA axis, providing an opportunity for genomics-guided intervention.

文献信息
期刊
Cancer discovery
期刊简称
Cancer Discov
发表日期
2014-09-30
收录日期
2014-02-06
更新日期
2016-10-25
语言
英语
国家/地区
United States
NLM ID
101561693
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