Figure 4
Figure 4. Ablation of Jam-A results in hyperaggregability. (A) Representative aggregation tracings of platelets from Jam-Awt/wt and Jam-Agt/gt mice induced by AYPGQV (PAR 4 peptide), ADP, or collagen as indicated. Experiments were performed at least 3 times independently. (B) Surface expression of integrin αIIbβ3 on Jam-Awt/wt and Jam-Agt/gt platelets as analyzed by flow cytometry. (C) FITC-labeled Fg binding to Jam-Awt/wt and Jam-Agt/gt platelets stimulated with 100μM AYPGKF and analyzed by flow cytometry. (D) Representative flow cytometric histogram of JON/A binding to Jam-Awt/wt and Jam-Agt/gt platelets stimulated with AYPGKF. Quantitation of mean fluorescence intensity of JON/A binding on stimulation with various concentrations of AYPGKF from 3 independent experiments.

Ablation of Jam-A results in hyperaggregability. (A) Representative aggregation tracings of platelets from Jam-Awt/wt and Jam-Agt/gt mice induced by AYPGQV (PAR 4 peptide), ADP, or collagen as indicated. Experiments were performed at least 3 times independently. (B) Surface expression of integrin αIIbβ3 on Jam-Awt/wt and Jam-Agt/gt platelets as analyzed by flow cytometry. (C) FITC-labeled Fg binding to Jam-Awt/wt and Jam-Agt/gt platelets stimulated with 100μM AYPGKF and analyzed by flow cytometry. (D) Representative flow cytometric histogram of JON/A binding to Jam-Awt/wt and Jam-Agt/gt platelets stimulated with AYPGKF. Quantitation of mean fluorescence intensity of JON/A binding on stimulation with various concentrations of AYPGKF from 3 independent experiments.

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