A paracrine activin A–mDia2 axis promotes squamous carcinogenesis via fibroblast reprogramming

Michael Cangkrama(ETH Zurich), Mateusz S. Wietecha(ETH Zurich), Nicolas Mathis(ETH Zurich), Rin Okumura(ETH Zurich), Luca Ferrarese(ETH Zurich), Dunja Al‐Nuaimi(ETH Zurich), Maria Antsiferova(ETH Zurich), Reinhard Dummer(University Hospital of Zurich), Metello Innocenti(Heidelberg University), Sabine Werner(ETH Zurich)
EMBO Molecular Medicine
March 9, 2020
Cited by 62Open Access
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Abstract

Abstract Cancer‐associated fibroblasts (CAFs) are key regulators of tumorigenesis and promising targets for next‐generation therapies. We discovered that cancer cell‐derived activin A reprograms fibroblasts into pro‐tumorigenic CAFs. Mechanistically, this occurs via Smad2‐mediated transcriptional regulation of the formin mDia2, which directly promotes filopodia formation and cell migration. mDia2 also induces expression of CAF marker genes through prevention of p53 nuclear accumulation, resulting in the production of a pro‐tumorigenic matrisome and secretome. The translational relevance of this finding is reflected by activin A overexpression in tumor cells and of mDia2 in the stroma of skin cancer and other malignancies and the correlation of high activin A/mDia2 levels with poor patient survival. Blockade of this signaling axis using inhibitors of activin, activin receptors, or mDia2 suppressed cancer cell malignancy and squamous carcinogenesis in 3D organotypic cultures, ex vivo, and in vivo , providing a rationale for pharmacological inhibition of activin A‐mDia2 signaling in stratified cancer patients.


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