The Journal of Cell Biology · 2009 · 159 citations · 46 references
Injury-initiated epithelial to mesenchymal transition (EMT) depends on contextual signals from the extracellular matrix, suggesting a role for integrin signaling. Primary epithelial cells deficient in their prominent laminin receptor, alpha3beta1, were found to have a markedly blunted EMT response to TGF-beta1. A mechanism for this defect was explored in alpha3-null cells reconstituted with wild-type (wt) alpha3 or point mutants unable to engage laminin 5 (G163A) or epithelial cadherin (E-cadherin; H245A). After TGF-beta1 stimulation, wt epithelial cells but not cells expressing the H245A mutant internalize complexes of E-cadherin and TGF-beta1 receptors, generate phospho-Smad2 (p-Smad2)-pY654-beta-catenin complexes, and up-regulate mesenchymal target genes. Although Smad2 phosphorylation is normal, p-Smad2-pY654-beta-catenin complexes do not form in the absence of alpha3 or when alpha3beta1 is mainly engaged on laminin 5 or E-cadherin in adherens junctions, leading to attenuated EMT. These findings demonstrate that alpha3beta1 coordinates cross talk between beta-catenin and Smad signaling pathways as a function of extracellular contact cues and thereby regulates responses to TGF-beta1 activation.
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Controlling TGF-beta signaling.
Joan Massagué, Ye-Guang Chen · PubMed · 2000 · 1.8K citations
Molecular Physiology, Signal Transduction, Signaling Pathway +5
Joan Massagué, Ye‐Guang Chen · Genes & Development · 2000 · 1.6K citations · Full text
Signal Transduction, Signaling Pathway, Receptor Tyrosine Kinase +3
Kevin K. Kim, Matthias C. Kugler, Paul J. Wolters et al. · Proceedings of the National Academy of Sciences · 2006 · 1.2K citations · Full text
Undergo Robust Emt, Inflammatory Lung Disease, Lung Inflammation +19