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Proc Natl Acad Sci U S A ; 116(43): 21545-21555, 2019 10 22.
Article in English | MEDLINE | ID: mdl-31591245

ABSTRACT

The cadherin-catenin adhesion complex is the central component of the cell-cell adhesion adherens junctions that transmit mechanical stress from cell to cell. We have determined the nanoscale structure of the adherens junction complex formed by the α-catenin•ß-catenin•epithelial cadherin cytoplasmic domain (ABE) using negative stain electron microscopy, small-angle X-ray scattering, and selective deuteration/small-angle neutron scattering. The ABE complex is highly pliable and displays a wide spectrum of flexible structures that are facilitated by protein-domain motions in α- and ß-catenin. Moreover, the 107-residue intrinsically disordered N-terminal segment of ß-catenin forms a flexible "tongue" that is inserted into α-catenin and participates in the assembly of the ABE complex. The unanticipated ensemble of flexible conformations of the ABE complex suggests a dynamic mechanism for sensitivity and reversibility when transducing mechanical signals, in addition to the catch/slip bond behavior displayed by the ABE complex under mechanical tension. Our results provide mechanistic insight into the structural dynamics for the cadherin-catenin adhesion complex in mechanotransduction.


Subject(s)
Cadherins/chemistry , Cadherins/metabolism , Mechanotransduction, Cellular , alpha Catenin/chemistry , alpha Catenin/metabolism , beta Catenin/chemistry , beta Catenin/metabolism , Adherens Junctions/chemistry , Adherens Junctions/genetics , Adherens Junctions/metabolism , Amino Acid Motifs , Cadherins/genetics , Humans , Molecular Conformation , Protein Binding , Protein Domains , Scattering, Small Angle , alpha Catenin/genetics , beta Catenin/genetics
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