Cell-cell adhesion systems regulate cell-cell interactions in all solid tissues of the body. Many of the best-understood cell-cell adhesion systems physically interact with elements of the cytoskeleton to mediate functional cooperation between cytoskeleton and adhesion. This article discusses the mechanisms that couple actin filaments, intermediate filaments, and microtubules to classical and desmosomal cadherins and outlines how cytoskeletal association contributes to the biological function of these adhesive junctions
The shape of cells is altered to allow cells to adapt to their changing environments, including resp...
E-cadherin is a trans-membrane tumor suppressor responsible for epithelial cell adhesion. E-cadherin...
Regulation of cadherin adhesion in tissue organization and malignant transformation.Cadherins are ce...
Classical cadherin adhesion receptors influence tissue integrity in health and disease. Their biolog...
Classical cadherin adhesion receptors influence tissue integrity in health and disease. Their biolog...
Classical cadherin adhesion molecules are fundamental determinants of tissue organization in both he...
Cells are linked together dynamically by adhesion molecules, such as the classical cadherins. E-cadh...
Adherens junctions are specialized forms of cadherin-based adhesive contacts important for tissue or...
Proper regulation of the formation and stabilization of epithelial cell–cell adhesion is crucial in ...
Cell-cell adhesion is critical in morphogenesis, tissue formation, cancer, and wound healing. A bett...
Intercellular adhesion is the key to multicellularity, and its malfunction plays an important role i...
Epithelial cell–cell junctions are formed by apical adherens junctions (AJs), which are composed of ...
Cadherin cell adhesion molecules are major determinants of tissue patterning which function in coope...
The characteristic tall and elongated shape of epithelial cells requires specialized adhesive struct...
Classical cadherin adhesion receptors exert many of their biological effects through close cooperati...
The shape of cells is altered to allow cells to adapt to their changing environments, including resp...
E-cadherin is a trans-membrane tumor suppressor responsible for epithelial cell adhesion. E-cadherin...
Regulation of cadherin adhesion in tissue organization and malignant transformation.Cadherins are ce...
Classical cadherin adhesion receptors influence tissue integrity in health and disease. Their biolog...
Classical cadherin adhesion receptors influence tissue integrity in health and disease. Their biolog...
Classical cadherin adhesion molecules are fundamental determinants of tissue organization in both he...
Cells are linked together dynamically by adhesion molecules, such as the classical cadherins. E-cadh...
Adherens junctions are specialized forms of cadherin-based adhesive contacts important for tissue or...
Proper regulation of the formation and stabilization of epithelial cell–cell adhesion is crucial in ...
Cell-cell adhesion is critical in morphogenesis, tissue formation, cancer, and wound healing. A bett...
Intercellular adhesion is the key to multicellularity, and its malfunction plays an important role i...
Epithelial cell–cell junctions are formed by apical adherens junctions (AJs), which are composed of ...
Cadherin cell adhesion molecules are major determinants of tissue patterning which function in coope...
The characteristic tall and elongated shape of epithelial cells requires specialized adhesive struct...
Classical cadherin adhesion receptors exert many of their biological effects through close cooperati...
The shape of cells is altered to allow cells to adapt to their changing environments, including resp...
E-cadherin is a trans-membrane tumor suppressor responsible for epithelial cell adhesion. E-cadherin...
Regulation of cadherin adhesion in tissue organization and malignant transformation.Cadherins are ce...