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  • Documentation and localization of force-mediated filamin A domain perturbations in moving cells.

Documentation and localization of force-mediated filamin A domain perturbations in moving cells.

Nature communications (2014-08-15)
Fumihiko Nakamura, Mia Song, John H Hartwig, Thomas P Stossel
ABSTRACT

Endogenously and externally generated mechanical forces influence diverse cellular activities, a phenomenon defined as mechanotransduction. Deformation of protein domains by application of stress, previously documented to alter macromolecular interactions in vitro, could mediate these effects. We engineered a photon-emitting system responsive to unfolding of two repeat domains of the actin filament (F-actin) crosslinker protein filamin A (FLNA) that binds multiple partners involved in cell signalling reactions and validated the system using F-actin networks subjected to myosin-based contraction. Expressed in cultured cells, the sensor-containing FLNA construct reproducibly reported FLNA domain unfolding strikingly localized to dynamic, actively protruding, leading cell edges. The unfolding signal depends upon coherence of F-actin-FLNA networks and is enhanced by stimulating cell contractility. The results establish protein domain distortion as a bona fide mechanism for mechanotransduction in vivo.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Myosin, Calcium activated from porcine heart, buffered aqueous glycerol solution, 0.1-0.5 units/mg protein (biuret)