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Publication : Platelet clearance via shear-induced unfolding of a membrane mechanoreceptor.

First Author  Deng W Year  2016
Journal  Nat Commun Volume  7
Pages  12863 PubMed ID  27670775
Mgi Jnum  J:242369 Mgi Id  MGI:5905094
Doi  10.1038/ncomms12863 Citation  Deng W, et al. (2016) Platelet clearance via shear-induced unfolding of a membrane mechanoreceptor. Nat Commun 7:12863
abstractText  Mechanisms by which blood cells sense shear stress are poorly characterized. In platelets, glycoprotein (GP)Ib-IX receptor complex has been long suggested to be a shear sensor and receptor. Recently, a relatively unstable and mechanosensitive domain in the GPIbalpha subunit of GPIb-IX was identified. Here we show that binding of its ligand, von Willebrand factor, under physiological shear stress induces unfolding of this mechanosensory domain (MSD) on the platelet surface. The unfolded MSD, particularly the juxtamembrane 'Trigger' sequence therein, leads to intracellular signalling and rapid platelet clearance. These results illustrate the initial molecular event underlying platelet shear sensing and provide a mechanism linking GPIb-IX to platelet clearance. Our results have implications on the mechanism of platelet activation, and on the pathophysiology of von Willebrand disease and related thrombocytopenic disorders. The mechanosensation via receptor unfolding may be applicable for many other cell adhesion receptors.
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