Classical cadherin adhesion receptors exert many of their biological effects through close cooperation with the cytoskeleton. Much attention has focused on attempting to understand the physical interactions between cadherin molecular complexes and cortical actin filaments. In this review we aim to draw attention to other issues that highlight the diverse and dynamic cytoskeletons that contribute to cadherin function. First, we discuss the regulation of actin filament dynamics in the cadherin-based junctional cytoskeleton, focusing on the emerging role of Arp2/3 as a junctional actin nucleator and its implications for actin homeostasis at junctions. Second, we review recent developments in understanding the impact of microtubules on cadherin...
Cadherin-based cell-cell adhesions are a primary determinant of tissue structure. For several decade...
E-cadherin is a trans-membrane tumor suppressor responsible for epithelial cell adhesion. E-cadherin...
In spite of extensive recent progress, a comprehensive understanding of how actin cytoskeleton remod...
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...
Cells are linked together dynamically by adhesion molecules, such as the classical cadherins. E-cadh...
In this chapter, we discuss the cell biology of contractility at cell–cell junctions. As discussed e...
Cadherin cell adhesion molecules are major determinants of tissue patterning which function in coope...
International audienceAdhesive interactions of cadherins induce crosstalk between adhesion complexes...
Epithelial cell–cell junctions are formed by apical adherens junctions (AJs), which are composed of ...
Cadherin-mediated cell-cell interactions are dynamic processes, and cadherin function is tightly reg...
Classical cadherins are fundamental determinants of tissue organization both in health and disease. ...
Cell-cell adhesion systems regulate cell-cell interactions in all solid tissues of the body. Many of...
Classical cadherins are fundamental determinants of tissue organization both in health and disease. ...
Cadherin-based cell–cell adhesions are dynamic structures that mediate tissue organization and morph...
Cadherin-based cell-cell adhesions are a primary determinant of tissue structure. For several decade...
E-cadherin is a trans-membrane tumor suppressor responsible for epithelial cell adhesion. E-cadherin...
In spite of extensive recent progress, a comprehensive understanding of how actin cytoskeleton remod...
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...
Cells are linked together dynamically by adhesion molecules, such as the classical cadherins. E-cadh...
In this chapter, we discuss the cell biology of contractility at cell–cell junctions. As discussed e...
Cadherin cell adhesion molecules are major determinants of tissue patterning which function in coope...
International audienceAdhesive interactions of cadherins induce crosstalk between adhesion complexes...
Epithelial cell–cell junctions are formed by apical adherens junctions (AJs), which are composed of ...
Cadherin-mediated cell-cell interactions are dynamic processes, and cadherin function is tightly reg...
Classical cadherins are fundamental determinants of tissue organization both in health and disease. ...
Cell-cell adhesion systems regulate cell-cell interactions in all solid tissues of the body. Many of...
Classical cadherins are fundamental determinants of tissue organization both in health and disease. ...
Cadherin-based cell–cell adhesions are dynamic structures that mediate tissue organization and morph...
Cadherin-based cell-cell adhesions are a primary determinant of tissue structure. For several decade...
E-cadherin is a trans-membrane tumor suppressor responsible for epithelial cell adhesion. E-cadherin...
In spite of extensive recent progress, a comprehensive understanding of how actin cytoskeleton remod...