The Journal of Cell Biology · 2010 · 639 citations · 38 references
Cell surface receptors integrate chemical and mechanical cues to regulate a wide range of biological processes. Integrin complexes are the mechanotransducers between the extracellular matrix and the actomyosin cytoskeleton. By analogy, cadherin complexes may function as mechanosensors at cell-cell junctions, but this capacity of cadherins has not been directly demonstrated. Furthermore, the molecular composition of the link between E-cadherin and actin, which is needed to sustain such a function, is unresolved. In this study, we describe nanomechanical measurements demonstrating that E-cadherin complexes are functional mechanosensors that transmit force between F-actin and E-cadherin. Imaging experiments reveal that intercellular forces coincide with vinculin accumulation at actin-anchored cadherin adhesions, and nanomechanical measurements show that vinculin potentiates the E-cadherin mechanosensory response. These investigations directly demonstrate the mechanosensory capacity of the E-cadherin complex and identify a novel function for vinculin at cell-cell junctions. These findings have implications for barrier function, morphogenesis, cell migration, and invasion and may extend to all soft tissues in which classical cadherins regulate cell-cell adhesion.
38
Stretching Single Talin Rod Molecules Activates Vinculin Binding
Armando E. del Río Hernández, Raúl Pérez‐Jiménez, Ruchuan Liu et al. · Science · 2009 · 1.5K citations · Full text
Mechanobiology, Single Molecule Biophysics, Protein Folding +14
Deconstructing the Cadherin-Catenin-Actin Complex
Soichiro Yamada, Sabine Pokutta, Frauke Drees et al. · Cell · 2005 · 992 citations · Full text
Signal Transduction, Cadherin-catenin-actin Complex, Natural Sciences +7