G protein–dependent basal and evoked endothelial cell vWF secretion

von Willebrand factor (vWF) secretion by endothelial cells (ECs) is essential for hemostasis and thrombosis; however, the molecular mechanisms are poorly understood. Interestingly, we observed increased bleeding in EC-Gα13−/−;Gα12−/− mice that could be normalized by infusion of human vWF. Blood from...

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Veröffentlicht in:Blood 2014-01, Vol.123 (3), p.442-450
Hauptverfasser: Rusu, Luiza, Andreeva, Alexandra, Visintine, David J., Kim, Kyungho, Vogel, Stephen M., Stojanovic-Terpo, Aleksandra, Chernaya, Olga, Liu, Guoquan, Bakhshi, Farnaz R., Haberichter, Sandra L., Iwanari, Hiroko, Kusano-Arai, Osamu, Suzuki, Nobuchika, Hamakubo, Takao, Kozasa, Tohru, Cho, Jaehyung, Du, Xiaoping, Minshall, Richard D.
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Sprache:eng
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Zusammenfassung:von Willebrand factor (vWF) secretion by endothelial cells (ECs) is essential for hemostasis and thrombosis; however, the molecular mechanisms are poorly understood. Interestingly, we observed increased bleeding in EC-Gα13−/−;Gα12−/− mice that could be normalized by infusion of human vWF. Blood from Gα12−/− mice exhibited significantly reduced vWF levels but normal vWF multimers and impaired laser-induced thrombus formation, indicating that Gα12 plays a prominent role in EC vWF secretion required for hemostasis and thrombosis. In isolated buffer-perfused mouse lungs, basal vWF levels were significantly reduced in Gα12−/−, whereas thrombin-induced vWF secretion was defective in both EC-Gαq−/−;Gα11−/− and Gα12−/− mice. Using siRNA in cultured human umbilical vein ECs and human pulmonary artery ECs, depletion of Gα12 and soluble N-ethylmaleimide-sensitive-fusion factor attachment protein α (α-SNAP), but not Gα13, inhibited both basal and thrombin-induced vWF secretion, whereas overexpression of activated Gα12 promoted vWF secretion. In Gαq, p115 RhoGEF, and RhoA-depleted human umbilical vein ECs, thrombin-induced vWF secretion was reduced by 40%, whereas basal secretion was unchanged. Finally, in vitro binding assays revealed that Gα12 N-terminal residues 10-15 mediated the binding of Gα12 to α-SNAP, and an engineered α-SNAP binding-domain minigene peptide blocked basal and evoked vWF secretion. Discovery of obligatory and complementary roles of Gα12 and Gαq/11 in basal vs evoked EC vWF secretion may provide promising new therapeutic strategies for treatment of thrombotic disease. •Gα12 interaction with α-SNAP regulates basal EC vWF secretion.•PAR-1 activation-dependent signaling via Gα12/RhoA and Gαq/11 enhances vWF secretion.
ISSN:0006-4971
1528-0020
DOI:10.1182/blood-2013-03-489351