Sustained α-catenin Activation at E-cadherin Junctions in the Absence of Mechanical Force

Biophys J. 2016 Sep 6;111(5):1044-52. doi: 10.1016/j.bpj.2016.06.027.

Abstract

Mechanotransduction at E-cadherin junctions has been postulated to be mediated in part by a force-dependent conformational activation of α-catenin. Activation of α-catenin allows it to interact with vinculin in addition to F-actin, resulting in a strengthening of junctions. Here, using E-cadherin adhesions reconstituted on synthetic, nanopatterned membranes, we show that activation of α-catenin is dependent on E-cadherin clustering, and is sustained in the absence of mechanical force or association with F-actin or vinculin. Adhesions were formed by filopodia-mediated nucleation and micron-scale assembly of E-cadherin clusters, which could be distinguished as either peripheral or central assemblies depending on their relative location at the cell-bilayer adhesion. Whereas F-actin, vinculin, and phosphorylated myosin light chain associated only with the peripheral assemblies, activated α-catenin was present in both peripheral and central assemblies, and persisted in the central assemblies in the absence of actomyosin tension. Impeding filopodia-mediated nucleation and micron-scale assembly of E-cadherin adhesion complexes by confining the movement of bilayer-bound E-cadherin on nanopatterned substrates reduced the levels of activated α-catenin. Taken together, these results indicate that although the initial activation of α-catenin requires micron-scale clustering that may allow the development of mechanical forces, sustained force is not required for maintaining α-catenin in the active state.

MeSH terms

  • Actins / chemistry
  • Actins / metabolism
  • Antigens, CD
  • Cadherins / chemistry
  • Cadherins / genetics
  • Cadherins / metabolism*
  • Cell Adhesion / drug effects
  • Cell Adhesion / physiology*
  • Cell Culture Techniques
  • Cell Line, Tumor
  • Green Fluorescent Proteins / genetics
  • Green Fluorescent Proteins / metabolism
  • Humans
  • Lipid Bilayers / chemistry
  • Mechanotransduction, Cellular / drug effects
  • Mechanotransduction, Cellular / physiology*
  • Microscopy, Confocal
  • Microscopy, Fluorescence
  • Myosin Light Chains / chemistry
  • Myosin Light Chains / metabolism
  • Stress, Mechanical
  • Vinculin / chemistry
  • Vinculin / metabolism
  • alpha Catenin / chemistry
  • alpha Catenin / metabolism*
  • rho-Associated Kinases / antagonists & inhibitors
  • rho-Associated Kinases / chemistry
  • rho-Associated Kinases / metabolism

Substances

  • Actins
  • Antigens, CD
  • CDH1 protein, human
  • Cadherins
  • Lipid Bilayers
  • Myosin Light Chains
  • alpha Catenin
  • Vinculin
  • Green Fluorescent Proteins
  • rho-Associated Kinases