The focal adhesion kinase Pyk2 links Ca2+ signalling to Src family kinase activation and protein tyrosine phosphorylation in thrombin-stimulated platelets

Author:

Canobbio Ilaria1,Cipolla Lina1,Guidetti Gianni F.1,Manganaro Daria1,Visconte Caterina1,Kim Soochong23,Okigaki Mitsuhiko4,Falasca Marco5,Kunapuli Satya P.2,Torti Mauro1

Affiliation:

1. Department of Biology and Biotechnology, Laboratory of Biochemistry, University of Pavia via Bassi 21, 27100 Pavia, Italy

2. Departments of Physiology and Pharmacology and Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, PA 19140, U.S.A.

3. College of Veterinary Medicine, Chungbuk National University, Cheongju, Chungbuk 362-763, Korea

4. Department of Cardiovascular Medicine, Kyoto Prefectural University, Kyoto 602-8566, Japan

5. Metabolic Signalling Group, School of Biomedical Sciences, Curtin Health Innovation Research Institute Biosciences, Curtin University, Perth 6845, Western Australia

Abstract

In blood platelets, stimulation of G protein-coupled receptors (GPCRs) by thrombin triggers the activation of Src family kinases (SFKs), resulting in the tyrosine-phosphorylation of multiple substrates, but the mechanism underlying this process is still poorly understood. In the present study, we show that the time-dependent protein-tyrosine phosphorylation triggered by thrombin in human or murine platelets was totally suppressed only upon concomitant chelation of intracellular Ca2+ and inhibition of SFKs. Thrombin-induced activation of SFKs was regulated by intracellular Ca2+ and accordingly the Ca2+ ionophore A23187 was sufficient to stimulate SFKs. A23187 also triggered the phosphorylation and activation of the Ca2+-dependent focal adhesion kinase Pyk2 and Pyk2 activation by thrombin was Ca2+-dependent. Stimulation of SFKs by thrombin or A23187 was strongly reduced in platelets from Pyk2 knockout (KO) mice, as was the overall pattern of protein-tyrosine phosphorylation. By immunoprecipitation experiments, we demonstrate that Lyn and Fyn, but not Src, were activated by Pyk2. Inhibition of SFKs by PP2 also reduced the phosphorylation of Pyk2 in thrombin or A23187-stimulated platelets. Analysis of KO mice demonstrated that Fyn, but not Lyn, was required for complete Pyk2 phosphorylation by thrombin. Finally, PP2 reduced aggregation of murine platelets to a level comparable to that of Pyk2-deficient platelets, but did not have further effects in the absence of Pyk2. These results indicate that in thrombin-stimulated platelets, stimulation of Pyk2 by intracellular Ca2+ initiates SFK activation, establishing a positive loop that reinforces the Pyk2/SFK axis and allows the subsequent massive tyrosine phosphorylation of multiple substrates required for platelet aggregation.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference42 articles.

1. The growing complexity of platelet aggregation;Jackson;Blood,2007

2. Platelet tyrosine-specific protein phosphorylation is regulated by thrombin;Ferrell;Mol. Cell. Biol.,1988

3. Thrombin treatment induces rapid changes in tyrosine phosphorylation in platelets;Golden;Proc. Natl. Acad. Sci. U.S.A.,1989

4. Erythropoietin rapidly induces tyrosine phosphorylation in the human erythropoietin-dependent cell line, UT-7;Komatsu;Blood,1992

5. Blood platelets express high levels of the pp60c-Src-specific tyrosine kinase activity;Golden;Proc. Natl. Acad. Sci. U.S.A.,1986

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