1. Academic Validation
  2. Integrins β1 and β3 exhibit distinct dynamic nanoscale organizations inside focal adhesions

Integrins β1 and β3 exhibit distinct dynamic nanoscale organizations inside focal adhesions

  • Nat Cell Biol. 2012 Oct;14(10):1057-67. doi: 10.1038/ncb2588.
Olivier Rossier 1 Vivien Octeau Jean-Baptiste Sibarita Cécile Leduc Béatrice Tessier Deepak Nair Volker Gatterdam Olivier Destaing Corinne Albigès-Rizo Robert Tampé Laurent Cognet Daniel Choquet Brahim Lounis Grégory Giannone
Affiliations

Affiliation

  • 1 Interdisciplinary Institute for Neuroscience, University of Bordeaux, UMR 5297, F-33000 Bordeaux, France.
Abstract

Integrins in focal adhesions (FAs) mediate adhesion and force transmission to extracellular matrices essential for cell motility, proliferation and differentiation. Different fibronectin-binding integrins, simultaneously present in FAs, perform distinct functions. Yet, how Integrin dynamics control biochemical and biomechanical processes in FAs is still elusive. Using single-protein tracking and super-resolution imaging we revealed the dynamic nano-organizations of integrins and talin inside FAs. Integrins reside in FAs through free-diffusion and immobilization cycles. Integrin activation promotes immobilization, stabilized in FAs by simultaneous connection to fibronectin and actin-binding proteins. Talin is recruited in FAs directly from the cytosol without membrane free-diffusion, restricting Integrin immobilization to FAs. Immobilized β3-integrins are enriched and stationary within FAs, whereas immobilized β1-integrins are less enriched and exhibit rearward movements. Talin is enriched and mainly stationary, but also exhibited rearward movements in FAs, consistent with stable connections with both β-integrins. Thus, differential transmission of actin motion to fibronectin occurs through specific integrins within FAs.

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