Molecular motion and tridimensional nanoscale localization of kindlin control integrin activation in focal adhesions

Author:

Orré Thomas,Karatas Zeynep,Kastberger Birgit,Cabriel Clément,Böttcher Ralph T.,Lévêque-Fort Sandrine,Sibarita Jean-Baptiste,Fässler Reinhard,Wehrle-Haller Bernhard,Rossier Olivier,Giannone Grégory

Abstract

AbstractFocal adhesions (FAs) initiate chemical and mechanical signals involved in cell polarity, migration, proliferation and differentiation. Super-resolution microscopy revealed that FAs are organized at the nanoscale into functional layers from the lower plasma membrane to the upper actin cytoskeleton. Yet, how FAs proteins are guided into specific nano-layers to promote interaction with given targets is unknown. Using single protein tracking, super-resolution microscopy and functional assays, we linked the molecular behavior and tridimensional nanoscale localization of kindlin with its function in integrin activation inside FAs. We show that immobilization of integrins in FAs depends on interaction with kindlin. Unlike talin, kindlin displayed free diffusion along the plasma membrane outside and inside FAs. We demonstrate that the kindlin Pleckstrin Homology domain promotes membrane diffusion and localization to the membrane-proximal integrin nano-layer, necessary for kindlin enrichment and function in FAs. Using kindlin-deficient cells, we show that kindlin membrane localization and diffusion are crucial for integrin activation during cell adhesion and spreading. Thus, kindlin uses a different route than talin to reach and activate integrins, providing a possible molecular basis for their complementarity during integrin activation.

Publisher

Cold Spring Harbor Laboratory

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