Abstract
Platelet adhesion and aggregation at sites of vascular injury are essential for normal hemostasis but may also lead to pathological thrombus formation, causing diseases such as myocardial infarction or stroke. Heterodimeric receptors of the integrin family play a central role in the adhesion and aggregation of platelets. In resting platelets, integrins exhibit a low affinity state for their ligands, and they shift to a high affinity state at sites of vascular injury. It has been proposed that direct binding of the cytoskeletal protein talin1 to the cytoplasmic domain of the integrin beta subunits is necessary and sufficient to trigger the activation of integrins to this high affinity state, but direct in vivo evidence in support of this hypothesis is still lacking. Here, we show that platelets from mice lacking talin1 are unable to activate integrins in response to all known major platelet agonists while other cellular functions are still preserved. As a consequence, mice with talin-deficient platelets display a severe hemostatic defect and are completely resistant to arterial thrombosis. Collectively, these experiments demonstrate that talin is required for inside-out activation of platelet integrins in hemostasis and thrombosis.
MeSH Terms
Animals
Arterioles/metabolism
Blood Platelets/cytology,metabolism
Chlorides
Cytoplasm/metabolism
Ferric Compounds/pharmacology
Flow Cytometry/methods
Integrins/metabolism
Mice
Mice, Transgenic
Microscopy/methods
Models, Genetic
Platelet Adhesiveness
Platelet Aggregation
Talin/biosynthesis
Thrombosis/metabolism
Chemicals
Chlorides
Ferric Compounds
Integrins
Talin
ferric chloride
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Nieswandt Bernhard
Rudolf Virchow Center, DFG Research Center for Experimental Biomedicine, University of Würzburg, 97078 Würzburg, Germany.
Moser Markus
Pleines Irina
Varga-Szabo David
Monkley Sue
Critchley David
Fässler Reinhard
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