AI Article Synopsis

  • - PTPN22 is a protein that plays a role in regulating T-cell signaling, but its expression and function in platelets were previously unknown, leading to an investigation of its role in platelet function.
  • - The study found that PTPN22 is expressed in both human and mouse platelets, and its absence resulted in enhanced platelet activities and faster arterial thrombus formation, while not impacting venous thrombosis or certain coagulation factors.
  • - The research highlighted the interaction between PTPN22 and PDE5A, noting that PTPN22 dephosphorylates PDE5A, suggesting that PTPN22 serves as a significant regulator of platelet function and a potential target for thrombotic disease treatments.

Article Abstract

Protein tyrosine phosphatase nonreceptor type 22 (PTPN22) is a protein tyrosine phosphatase that negatively regulates T-cell signaling. However, whether it is expressed and functions in platelets remains unknown. Here we investigated the expression and role of PTPN22 in platelet function. We reported PTPN22 expression in both human and mouse platelets. Using PTPN22-/- mice, we showed that PTPN22 deficiency significantly shortened tail-bleeding time and accelerated arterial thrombus formation without affecting venous thrombosis and the coagulation factors VIII and IX. Consistently, PTPN22-deficient platelets exhibited enhanced platelet aggregation, granule secretion, calcium mobilization, lamellipodia formation, spreading, and clot retraction. Quantitative phosphoproteomic analysis revealed the significant difference of phosphodiesterase 5A (PDE5A) phosphorylation in PTPN22-deficient platelets compared with wild-type platelets after collagen-related peptide stimulation, which was confirmed by increased PDE5A phosphorylation (Ser92) in collagen-related peptide-treated PTPN22-deficient platelets, concomitant with reduced level and vasodilator-stimulated phosphoprotein phosphorylation (Ser157/239). In addition, PTPN22 interacted with phosphorylated PDE5A (Ser92) and dephosphorylated it in activated platelets. Moreover, purified PTPN22 but not the mutant form (C227S) possesses intrinsic serine phosphatase activity. Furthermore, inhibition of PTPN22 enhanced human platelet aggregation, spreading, clot retraction, and increased PDE5A phosphorylation (Ser92). In conclusion, our study shows a novel role of PTPN22 in platelet function and arterial thrombosis, identifying new potential targets for future prevention of thrombotic or cardiovascular diseases.

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Source
http://dx.doi.org/10.1182/blood.2022015554DOI Listing

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