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Publication : An important role for Akt3 in platelet activation and thrombosis.

First Author  O'Brien KA Year  2011
Journal  Blood Volume  118
Issue  15 Pages  4215-23
PubMed ID  21821713 Mgi Jnum  J:178411
Mgi Id  MGI:5298310 Doi  10.1182/blood-2010-12-323204
Citation  O'Brien KA, et al. (2011) An important role for Akt3 in platelet activation and thrombosis. Blood 118(15):4215-23
abstractText  The Akt family of serine/threonine kinases includes Akt1, Akt2, and Akt3 isoforms. Prior studies have reported that Akt1 and Akt2, but not Akt3, are expressed in platelets. Here, we show that Akt3 is expressed in substantial amounts in platelets. Akt3(-/-) mouse platelets selectively exhibit impaired platelet aggregation and secretion in response to low concentrations of thrombin receptor agonists and thromboxane A (TXA), but not collagen or VWF. In contrast, platelets from Akt1(-/-) or Akt2(-/-) mice are defective in platelet activation induced by thrombin, TXA, and VWF, but only Akt1(-/-) platelets show significant defects in response to collagen, indicating differences among Akt isoforms. Akt3(-/-) platelets exhibit a significant reduction in thrombin-induced phosphorylation of glycogen synthase kinase 3beta (GSK-3beta) at Ser9, which is known to inhibit GSK-3beta function. Thus, Akt3 is important in inhibiting GSK-3beta. Accordingly, treatment of Akt3(-/-) platelets with a GSK-3beta inhibitor rescued the defect of Akt3(-/-) platelets in thrombin-induced aggregation, suggesting that negatively regulating GSK-3beta may be a mechanism by which Akt3 promotes platelet activation. Importantly, Akt3(-/-) mice showed retardation in FeCl-induced carotid artery thrombosis in vivo. Thus, Akt3 plays an important and distinct role in platelet activation and in thrombosis.
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