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The force‐sensing device region of α‐catenin is an intrinsically disordered segment in the absence of intramolecular stabilization of the autoinhibitory form
Author(s) -
Hirano Yoshinori,
Amano Yu,
Yonemura Shigenobu,
Hakoshima Toshio
Publication year - 2018
Publication title -
genes to cells
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.912
H-Index - 115
eISSN - 1365-2443
pISSN - 1356-9597
DOI - 10.1111/gtc.12578
Subject(s) - adherens junction , vinculin , mechanotransduction , helix bundle , biology , helix (gastropod) , biophysics , microbiology and biotechnology , protein structure , focal adhesion , biochemistry , cadherin , cell , signal transduction , ecology , snail
Mechanotransduction by α‐catenin facilitates the force‐dependent development of adherens junctions ( AJ s) by recruiting vinculin to reinforce actin anchoring of AJ s. The α‐catenin mechanotransducing action is facilitated by its force‐sensing device region that autoinhibits the vinculin‐binding site 1 ( VBS 1). Here, we report the high‐resolution structure of the force‐sensing device region of α‐catenin, which shows the autoinhibited form comprised of helix bundles E, F and G. The cryptic VBS 1 is embedded into helix bundle E stabilized by direct interactions with the autoinhibitory region forming helix bundles F and G. Our molecular dissection study showed that helix bundles F and G are stable in solution in each isolated form, whereas helix bundle E that contains VBS 1 is unstable and intrinsically disordered in solution in the isolated form. We successfully identified key residues mediating the autoinhibition and produced mutated α‐catenins that display variable force sensitivity and autoinhibition. Using these mutants, we demonstrate both in vitro and in vivo that, in the absence of this stabilization, the helix bundle containing VBS 1 would adopt an unfolded form, thus exposing VBS for vinculin binding. We provide evidence for importance of mechanotransduction with the intrinsic force sensitivity for vinculin recruitment to adherens junctions of epithelial cell sheets with mutated α‐catenins.