Functional Gene Expression Analysis Uncovers Phenotypic Switch in Aggressive Uveal Melanomas
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Open Access
- 1 May 2006
- journal article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 66 (9) , 4602-4609
- https://doi.org/10.1158/0008-5472.can-05-4196
Abstract
Microarray gene expression profiling is a powerful tool for generating molecular cancer classifications. However, elucidating biological insights from these large data sets has been challenging. Previously, we identified a gene expression-based classification of primary uveal melanomas that accurately predicts metastatic death. Class 1 tumors have a low risk and class 2 tumors a high risk for metastatic death. Here, we used genes that discriminate these tumor classes to identify biological correlates of the aggressive class 2 signature. A search for Gene Ontology categories enriched in our class-discriminating gene list revealed a global down-regulation of neural crest and melanocyte-specific genes and an up-regulation of epithelial genes in class 2 tumors. Correspondingly, class 2 tumors exhibited epithelial features, such as polygonal cell morphology, up-regulation of the epithelial adhesion molecule E-cadherin, colocalization of E-cadherin and β-catenin to the plasma membrane, and formation of cell-cell adhesions and acinar structures. One of our top class-discriminating genes was the helix-loop-helix inhibitor ID2, which was strongly down-regulated in class 2 tumors. The class 2 phenotype could be recapitulated by eliminating Id2 in cultured class 1 human uveal melanoma cells and in a mouse ocular melanoma model. Id2 seemed to suppress the epithelial-like class 2 phenotype by inhibiting an activator of the E-cadherin promoter. Consequently, Id2 loss triggered up-regulation of E-cadherin, which in turn promoted anchorage-independent cell growth, a likely antecedent to metastasis. These findings reveal new roles for Id2 and E-cadherin in uveal melanoma progression, and they identify potential targets for therapeutic intervention. (Cancer Res 2006; 66(9): 4602-9)Keywords
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This publication has 51 references indexed in Scilit:
- Association Between Microarray Gene Expression Signature and Extravascular Matrix Patterns in Primary Uveal MelanomasAmerican Journal of Ophthalmology, 2005
- Down-regulation of DNA mismatch repair proteins in human and murine tumor spheroids: implications for multicellular resistance to alkylating agentsMolecular Cancer Therapeutics, 2005
- A role for Id in the regulation of TGF-β-induced epithelial–mesenchymal transdifferentiationCell Death & Differentiation, 2004
- Id and developmentOncogene, 2001
- Transdifferentiation of neoplastic cellsMedical Hypotheses, 2001
- Tumor doubling times in metastatic malignant melanoma of the uvea Tumor progression before and after treatmentOphthalmology, 2000
- Vascular Channel Formation by Human Melanoma Cells in Vivo and in Vitro: Vasculogenic MimicryThe American Journal of Pathology, 1999
- Alterations in cadherin and catenin expression during the biological progression of melanocytic tumoursMolecular Pathology, 1999
- E-cadherin expression in human melanomaMelanoma Research, 1996
- Two distinct cDNA sequences encoding the human helix-loop-helix protein Id2Gene, 1993