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Updated: Jul 17, 2026

Comprehensive Analysis of Procoagulant Platelets Exhibiting Features of Necrosis, Apoptosis and Platelet Activation
Published on: May 23, 2025
Paxillin family members function as Csk-binding proteins that regulate Lyn activity in human and murine platelets
Vipul B Rathore1, Masato Okada, Peter J Newman
1Blood Research Institute, BloodCenter of Wisconsin, Milwaukee, WI, USA.
Abstract:
SFKs (Src family kinases) contribute importantly to platelet function in haemostasis. SFK activity is controlled by Csk (C-terminal Src kinase), which phosphorylates a C-terminal tyrosine residue on SFKs, resulting in inhibition of SFK activity. Csk is recruited to sites of SFK activity by tyrosine-phosphorylated Csk-binding proteins. Paxillin, a multidomain adaptor protein, has been shown to act as a Csk-binding protein and to inhibit Src activity during growth factor signalling. Human platelets express Hic-5, a member of the paxillin family; however, its ability to act as a Csk-binding protein has not been characterized. We sought to identify and characterize the ability of paxillin family members to act as Csk-binding proteins during platelet activation. We found that murine and human platelets differ in the complement of paxillin family members expressed. Human platelets express Hic-5, whereas murine platelets express paxillin and leupaxin in addition to Hic-5. In aggregating human platelets, Hic-5 was tyrosine phosphorylated and recruited Csk via its SH2 domains. In aggregating murine platelets, however, Csk bound preferentially to paxillin, even though both paxillin and Hic-5 were abundantly present and became tyrosine phosphorylated. The SFK Lyn, but not Src or Fyn, was associated with paxillin family members in resting and aggregated human and murine platelets. Lyn, however, was phosphorylated on its C-terminal inhibitory tyrosine residue only following platelet aggregation, which was coincident with recruitment of Csk to paxillin and/or Hic-5 in a manner dependent on prior alpha(IIb)beta3 engagement. These observations support the notion that Hic-5 and paxillin function as negative feedback regulators of SFKs in aggregated platelets and that, when both are present, paxillin is preferentially used.
Insights
Platelet activation involves Src family kinases (SFKs) regulated by C-terminal Src kinase (Csk). Paxillin family proteins, Hic-5 and paxillin, act as Csk-binding proteins, inhibiting SFK activity in aggregating platelets.
Area of Science:
- Biochemistry
- Molecular Biology
- Hematology
Background:
- Src family kinases (SFKs) are crucial for platelet function in hemostasis.
- C-terminal Src kinase (Csk) inhibits SFKs by phosphorylating their C-terminal tyrosine residue.
- Paxillin family proteins, like Hic-5, are known Csk-binding proteins involved in signaling.
Purpose of the Study:
- To investigate the role of paxillin family members as Csk-binding proteins during platelet activation.
- To characterize the differential binding of Csk to Hic-5 and paxillin in human and murine platelets.
Main Methods:
- Analysis of paxillin family member expression in human and murine platelets.
- Investigation of tyrosine phosphorylation and Csk recruitment to Hic-5 and paxillin during platelet aggregation.
- Assessment of SFK Lyn association and inhibitory phosphorylation in response to platelet activation.
Main Results:
- Human platelets express Hic-5, while murine platelets express Hic-5, paxillin, and leupaxin.
- In human platelets, Hic-5 recruits Csk upon aggregation.
- In murine platelets, Csk preferentially binds to paxillin, despite the presence of both Hic-5 and paxillin.
- SFK Lyn is associated with paxillin family members and its inhibitory phosphorylation is induced by platelet aggregation via Csk recruitment.
Conclusions:
- Hic-5 and paxillin function as negative feedback regulators of SFKs in aggregated platelets.
- Paxillin is preferentially utilized over Hic-5 for Csk binding when both are present.
- This study elucidates a conserved mechanism of SFK regulation in platelets involving paxillin family proteins.
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