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Distinct contributions of partial and full EMT to breast cancer malignancy.

Fabiana Lüönd ,
Nami Sugiyama ,
Ruben Bill ,
Laura Bornes ,
Carolina Hager ,
Fengyuan Tang ,
Natascha Santacroce ,
Christian Beisel ,
Robert Ivanek ,
Thomas Bürglin ,
Stefanie Tiede ,
Jacco van Rheenen ,
Gerhard Christofori

Abstract

Epithelial-mesenchymal transition (EMT) is a transient, reversible process of cell de-differentiation where cancer cells transit between various stages of an EMT continuum, including epithelial, partial EMT, and mesenchymal cell states. We have employed Tamoxifen-inducible dual recombinase lineage tracing systems combined with live imaging and 5-cell RNA sequencing to track cancer cells undergoing partial or full EMT in the MMTV-PyMT mouse model of metastatic breast cancer. In primary tumors, cancer cells infrequently undergo EMT and mostly transition between epithelial and partial EMT states but rarely reach full EMT. Cells undergoing partial EMT contribute to lung metastasis and chemoresistance, whereas full EMT cells mostly retain a mesenchymal phenotype and fail to colonize the lungs. However, full EMT cancer cells are enriched in recurrent tumors upon chemotherapy. Hence, cancer cells in various stages of the EMT continuum differentially contribute to hallmarks of breast cancer malignancy, such as tumor invasion, metastasis, and chemoresistance.

More about this publication

Developmental cell

Volume 56
Issue nr. 23
Pages 3203-3221.e11
Publication date 06-12-2021

Full text links

Publisher website (DOI) 10.1016/j.devcel.2021.11.006
Europe PubMed Central 34847378
Pubmed 34847378

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