Integrin-β4 identifies cancer stem cell-enriched populations of partially mesenchymal carcinoma cells
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Bierie-2017-Integrin-beta 4 identifies cancer.pdf
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Author(s) • • • • • • • • •
Bierie, Brian
Pierce, Sarah E.
Kroeger, Cornelia
Stover, Daniel G.
Pattabiraman, Diwakar R.
Thiru, Prathapan
Liu Donaher, Joana
Reinhardt, Ferenc
Chaffer, Christine L.
Keckesova, Zuzana
Date Issued
March 2017
Journal
Proceedings of the National Academy of Sciences
Publisher
National Academy of Sciences (U.S.)
Citation
Bierie, Brian et al. “Integrin-Β4 Identifies Cancer Stem Cell-Enriched Populations of Partially Mesenchymal Carcinoma Cells.” Proceedings of the National Academy of Sciences 114, 12 (March 2017): E2337–E2346 © 2017 National Academy of Sciences
Version
Final published version
Abstract
Neoplastic cells within individual carcinomas often exhibit considerable phenotypic heterogeneity in their epithelial versus mesenchymal-like cell states. Because carcinoma cells with mesenchymal features are often more resistant to therapy and may serve as a source of relapse, we sought to determine whether such cells could be further stratified into functionally distinct subtypes. Indeed, we find that a basal epithelial marker, integrin- β4 (ITGB4), can be used to enable stratification of mesenchymallike triple-negative breast cancer (TNBC) cells that differ from one another in their relative tumorigenic abilities. Notably, we demonstrate that ITGB4 + cancer stem cell (CSC)-enriched mesenchymal cells reside in an intermediate epithelial/mesenchymal phenotypic state. Among patients with TNBC who received chemotherapy, elevated ITGB4 expression was associated with a worse 5-year probability of relapse-free survival.Mechanistically,we find that the ZEB1 (zinc finger E-box binding homeobox 1) transcription factor activity in highly mesenchymal SUM159 TNBC cells can repress expression of the epithelial transcription factor TAp63α (tumor protein 63 isoform 1), a protein that promotes ITGB4 expression. In addition, we demonstrate that ZEB1 and ITGB4 are important in modulating the histopathological phenotypes of tumors derived from mesenchymal TNBC cells. Hence, mesenchymal carcinoma cell populations are internally heterogeneous, and ITGB4 is a mechanistically driven prognostic biomarker that can be used to identify the more aggressive subtypes of mesenchymal carcinoma cells in TNBC. The ability to rapidly isolate and mechanistically interrogate the CSC-enriched, partially mesenchymal carcinoma cells should further enable identification of novel therapeutic opportunities to improve the prognosis for high-risk patients with TNBC.
MIT Department
Massachusetts Institute of Technology. Department of Biology
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DOI of Published Version
https://doi.org/10.1073/PNAS.1618298114