Cancer Research · 2015 · 217 citations · 33 references
Epithelial-to-mesenchymal transition (EMT) is a key process associated with tumor progression and metastasis. To define molecular features associated with EMT states, we undertook an integrative approach combining mRNA, miRNA, DNA methylation, and proteomic profiles of 38 cell populations representative of the genomic heterogeneity in lung adenocarcinoma. The resulting data were integrated with functional profiles consisting of cell invasiveness, adhesion, and motility. A subset of cell lines that were readily defined as epithelial or mesenchymal based on their morphology and E-cadherin and vimentin expression elicited distinctive molecular signatures. Other cell populations displayed intermediate/hybrid states of EMT, with mixed epithelial and mesenchymal characteristics. A dominant proteomic feature of aggressive hybrid cell lines was upregulation of cytoskeletal and actin-binding proteins, a signature shared with mesenchymal cell lines. Cytoskeletal reorganization preceded loss of E-cadherin in epithelial cells in which EMT was induced by TGFβ. A set of transcripts corresponding to the mesenchymal protein signature enriched in cytoskeletal proteins was found to be predictive of survival in independent datasets of lung adenocarcinomas. Our findings point to an association between cytoskeletal and actin-binding proteins, a mesenchymal or hybrid EMT phenotype and invasive properties of lung adenocarcinomas.
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Arindam Bhattacharjee, William G. Richards, Jane Staunton et al. · Proceedings of the National Academy of Sciences · 2001 · 2.6K citations · Full text
Engineering, Pathology, Cancer Death +17
Molecular Definition of Breast Tumor Heterogeneity
Michail Shipitsin, Lauren L. Campbell, Pedram Argani et al. · Cancer Cell · 2007 · 1.4K citations · Full text
Disease Heterogeneity, Breast Oncology, Tumor Heterogeneity +6