Vimentin–ERK signaling uncouples slug gene regulatory function

R Virtakoivu, A Mai, E Mattila, N De Franceschi… - Cancer research, 2015 - AACR
R Virtakoivu, A Mai, E Mattila, N De Franceschi, SY Imanishi, G Corthals, R Kaukonen…
Cancer research, 2015AACR
Epithelial–mesenchymal transition (EMT) in cells is a developmental process adopted
during tumorigenesis that promotes metastatic capacity. In this study, we advance
understanding of EMT control in cancer cells with the description of a novel vimentin–ERK
axis that regulates the transcriptional activity of Slug (SNAI2). Vimentin, ERK, and Slug
exhibited overlapping subcellular localization in clinical specimens of triple-negative breast
carcinoma. RNAi-mediated ablation of these gene products inhibited cancer cell migration …
Abstract
Epithelial–mesenchymal transition (EMT) in cells is a developmental process adopted during tumorigenesis that promotes metastatic capacity. In this study, we advance understanding of EMT control in cancer cells with the description of a novel vimentin–ERK axis that regulates the transcriptional activity of Slug (SNAI2). Vimentin, ERK, and Slug exhibited overlapping subcellular localization in clinical specimens of triple-negative breast carcinoma. RNAi-mediated ablation of these gene products inhibited cancer cell migration and cell invasion through a laminin-rich matrix. Biochemical analyses demonstrated direct interaction of vimentin and ERK, which promoted ERK activation and enhanced vimentin transcription. Consistent with its role as an intermediate filament, vimentin acted as a scaffold to recruit Slug to ERK and promote Slug phosphorylation at serine-87. Site-directed mutagenesis established a requirement for ERK-mediated Slug phosphorylation in EMT initiation. Together, these findings identified a pivotal step in controlling the ability of Slug to organize hallmarks of EMT. Cancer Res; 75(11); 2349–62. ©2015 AACR.
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