Coordinate Activation of Human Platelet Protease-activated Receptor-1 and -4 in Response to Subnanomolar α-Thrombin
We previously demonstrated that human platelets activated with SFLLRN release PAR-1 activation peptide, PAR-1-(1â41), even in the presence of hirudin. This observation suggests that during their activation, platelets generate a protease that activates PAR-1. In this study, PAR-1 and -4 activation...
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Veröffentlicht in: | The Journal of biological chemistry 2008-10, Vol.283 (40), p.26886 |
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Sprache: | eng |
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Zusammenfassung: | We previously demonstrated that human platelets activated with SFLLRN release PAR-1 activation peptide, PAR-1-(1â41), even
in the presence of hirudin. This observation suggests that during their activation, platelets generate a protease that activates
PAR-1. In this study, PAR-1 and -4 activation peptides were detected 10 s after â¤1.0 n m α-thrombin, 10 μ m SFLLRN, or 100 μ m AYPGKF were added to platelets. When SFLLRN or AYGPKF were added to platelets, generation of PAR-1 and -4 activation peptides
was complete at 10 s. Generation of both PAR-1 and -4 activation peptides in response to 1 n m α-thrombin was significantly inhibited by affinity-purified anti-PAR-1-(35â62) IgY, anti-PAR-4-(34â54) IgY, and by the specific
PAR-1 antagonist BMS 200261, but not by the PAR-4 antagonist YD3. Effective inhibition of platelet aggregation in response
to 1.0 n m α-thrombin occurred only in the presence of both anti-PAR span antibodies. We conclude that platelet activation initiated
with â¤1.0 n m α-thrombin proceeds via simultaneous PAR-1 and -4 activation. Inhibiting the activation of either PAR inhibits activation
of the other. Both PAR-1 and -4 activation must be inhibited to prevent platelet activation subsequent to thrombin binding
to platelets. The more efficient generation of PAR activation peptides by platelets activated with SFLLRN or AYGPKF, compared
with α-thrombin, indicates that a platelet-derived serine protease that is inactivated by soybean trypsin inhibitor propagates
PAR-1 and -4 activation. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M802237200 |