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PMID: 20520718 已发表 · epublish 英语

Integrative genome comparison of primary and metastatic melanomas.

PloS one ·第 5 卷 ·第 5 期 ·2010-09-07

Kabbarah Omar, Nogueira Cristina, Feng Bin, Nazarian Rosalynn M, Bosenberg Marcus, Wu Min, Scott Kenneth L, Kwong Lawrence N, Xiao Yonghong, Cordon-Cardo Carlos, Granter Scott R, Ramaswamy Sridhar, Golub Todd, Duncan Lyn M, Wagner Stephan N, Brennan Cameron, Chin Lynda

摘要

A cardinal feature of malignant melanoma is its metastatic propensity. An incomplete view of the genetic events driving metastatic progression has been a major barrier to rational development of effective therapeutics and prognostic diagnostics for melanoma patients. In this study, we conducted global genomic characterization of primary and metastatic melanomas to examine the genomic landscape associated with metastatic progression. In addition to uncovering three genomic subclasses of metastastic melanomas, we delineated 39 focal and recurrent regions of amplification and deletions, many of which encompassed resident genes that have not been implicated in cancer or metastasis. To identify progression-associated metastasis gene candidates, we applied a statistical approach, Integrative Genome Comparison (IGC), to define 32 genomic regions of interest that were significantly altered in metastatic relative to primary melanomas, encompassing 30 resident genes with statistically significant expression deregulation. Functional assays on a subset of these candidates, including MET, ASPM, AKAP9, IMP3, PRKCA, RPA3, and SCAP2, validated their pro-invasion activities in human melanoma cells. Validity of the IGC approach was further reinforced by tissue microarray analysis of Survivin showing significant increased protein expression in thick versus thin primary cutaneous melanomas, and a progression correlation with lymph node metastases. Together, these functional validation results and correlative analysis of human tissues support the thesis that integrated genomic and pathological analyses of staged melanomas provide a productive entry point for discovery of melanoma metastases genes.

文献信息
期刊
PloS one
期刊简称
PLoS One
发表日期
2010-09-07
收录日期
2010-06-03
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
101285081
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