Connexin 43 loss triggers cell cycle entry and invasion in non-neoplastic breast epithelium: A role for noncanonical wnt signaling
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MDPI AG
Abstract
(1) Background: The expression of connexin 43 (Cx43) is disrupted in breast cancer, and re-expression of this protein in human breast cancer cell lines leads to decreased proliferation and invasiveness, suggesting a tumor suppressive role. This study aims to investigate the role of Cx43 in proliferation and invasion starting from non-neoplastic breast epithelium. (2) Methods: Nontumorigenic human mammary epithelial HMT-3522 S1 cells and Cx43 shRNA-transfected counterparts were cultured under 2-dimensional (2-D) and 3-D conditions. (3) Results: Silencing Cx43 induced mislocalization of β-catenin and Scrib from apicolateral membrane domains in glandular structures or acini formed in 3-D culture, suggesting the loss of apical polarity. Cell cycle entry and proliferation were enhanced, concomitantly with c-Myc and cyclin D1 upregulation, while no detectable activation of Wnt/β-catenin signaling was observed. Motility and invasion were also triggered and were associated with altered acinar morphology and activation of ERK1/2 and Rho GTPase signaling, which acts downstream of the noncanonical Wnt pathway. The invasion of Cx43-shRNA S1 cells was observed only under permissive stiffness of the extracellular matrix (ECM). (4) Conclusion: Our results suggest that Cx43 controls proliferation and invasion in the normal mammary epithelium in part by regulating noncanonical Wnt signaling. © 2019 by the authors. Licensee MDPI, Basel, Switzerland.
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Breast cancer, Connexin 43, Gap junctions, Invasion, Mammary epithelium, Mammary gland, Microenvironment, Motility, Proliferation, Wnt pathways, Beta catenin, Cyclin d1, Mitogen activated protein kinase 3, Myc protein, Rho guanine nucleotide binding protein, Scrib protein, Short hairpin rna, Unclassified drug, Article, Breast epithelium, Breast epithelium cell, Cancer prognosis, Cell cycle, Cell invasion, Cell motility, Cell polarity, Cell proliferation, Controlled study, Downstream processing, Extracellular matrix, Gap junction, Human, Human cell, Protein domain, Protein expression, Tumor growth, Tumor invasion, Tumor microenvironment, Tumor xenograft, Upregulation, Wnt signaling