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E-GEOD-76039 GSE76039 transcription profiling by array Homo sapiens

Genomic and Transcriptomic Hallmarks of Poorly-Differentiated and Anaplastic Thyroid Cancers

·发布 2016年2月15日 ·更新 2016年2月21日
37
样本数
37
实验数
1
芯片平台
实验描述

BACKGROUND. Poorly-differentiated (PDTC) and anaplastic (ATC) thyroid cancers are rare and frequently lethal tumors, which so far have not been subjected to comprehensive genetic characterization. METHODS. We performed next generation sequencing of 341 cancer genes in 117 PDTCs and ATCs, and a transcriptomic analysis of a representative subset of 37 tumors. Results were analyzed in the context of The Cancer Genome Atlas (TCGA) study of papillary thyroid cancers (PTC). RESULTS. ATCs have a greater mutation burden than PDTCs, and higher mutation frequency of TP53, TERT promoter, PI3K/AKT/mTOR pathway effectors, SWI/SNF subunits and histone methyltransferases. BRAF and RAS are the predominant drivers, and dictate remarkably distinct tropism for nodal vs. distant metastases in PDTC. RAS and BRAF sharply distinguish between PDTCs defined by the Turin (PDTC-Turin) vs. MSKCC (PDTC-MSK) criteria, respectively. Mutations of EIF1AX, a component of the translational preinitiation complex, are markedly enriched in PDTCs and ATCs, and have a striking pattern of co-occurrence with RAS. TERT promoter mutations are rare and subclonal in PTCs, whereas they are clonal and highly prevalent in advanced cancers. Application of the TCGA-derived BRAF-RAS score (a measure of MAPK transcriptional output) shows a preserved relationship with BRAF/RAS mutation in PDTCs, whereas ATCs are BRAF-like irrespective of driver mutation. CONCLUSIONS. These data support a model of tumorigenesis whereby PDTCs and ATCs arise from well-differentiated tumors through the accumulation of key additional genetic abnormalities, many of which have prognostic and possible therapeutic relevance. The widespread genomic disruptions in ATC compared to PDTC underscore their greater virulence and higher mortality. 37 tumor specimens, including 17 poorly-differentiated and 20 anaplastic thyroid cancers were expression-profiled with Affymetrix U133 plus 2.0 array

芯片平台
A-AFFY-44
Affymetrix GeneChip Human Genome U133 Plus 2.0 [HG-U133_Plus_2](37 例)
样本属性
organism
Homo sapiens
organism part
thyroid
sex
female, male
tumor type
Metastasis, Primary, Primary (residual), Recurrent tumor, Recurrent tumor in neck, Recurrent/persistent metastasic tumor to lymph node
实验信息
登记号
E-GEOD-76039
GEO 编号
GSE76039
实验类型
transcription profiling by array
物种
Homo sapiens
发布日期
2016年2月15日
更新日期
2016年2月21日
提交者
James A Fagin、 Barry S Taylor、 Julio C Ricarte-Filho、 Snjezana Dogan、 Iñigo Landa、 Nikolaus Schultz、 Chris Sander、 Gnana P Krishnamoorthy、 Michael F Berger、 Bin Xu、 Tihana Ibrahimpasic、 Jeffrey A Knauf、 Ian Ganly、 Rileen Sinha、 Laura Boucai、 Ronak H Shah、 Ronald Ghossein
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分析服务

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