Tyro3, Axl, and Mertk receptors differentially participate in platelet activation and thrombus formation
Junsong Zhou1, Aizhen Yang2, Yucan Wang2
1Cyrus Tang Hematology Center, Collaborative Innovation Center of Hematology, State Key Laboratory of Radiation Medicine and Protection, Soochow University, Suzhou, 215123, China. zhoujunsong417@163.com.
Background:
Previously, several studies have shown that Tyro3, Axl, and Mertk (TAM) receptors participate in platelet activation and thrombosis. However, the role of individual receptors is not fully understood.
Methods:
Using single receptor-deficient platelets from TAM knockout mice in the C57BL/6 J strain, we performed a knockout study using single TAM-deficient mice. We treated platelets isolated from TAM knockout mice with the Glycoprotein VI (GPVI) agonists convulxin, poly(PHG), and collagen-related triple-helical peptide (CRP), as well as thrombin for in-vitro experiments. We used a laser-induced cremaster arterial injury model for thrombosis experiments in vivo.
Results:
Deficiency of the tyrosine kinase receptors, Axl or Tyro3, but not Mertk, inhibited aggregation, spreading, JON/A binding, and P-selectin expression of platelets in vitro. In vivo, platelet thrombus formation was significantly decreased in Axl-/- and Tyro3-/- mice, but not in Mertk-/- mice. Upon stimulation with glycoprotein VI (GPVI) agonists, tyrosine phosphorylation of signaling molecules, including spleen tyrosine kinase (Syk) and phospholipase C-γ2 (PLCγ2), was decreased in Axl-/- and Tyro3-/- platelets, but not in Mertk-/- platelets. While platelet aggregation induced by agonists did not differ in the presence or absence of the Gas6 neutralizing antibody, the platelet aggregation was inhibited by anti-Axl or anti-Tyro3 neutralizing antibodies antibody, but not the anti-Mertk antibody. Additionally, the recombinant extracellular domain of Axl or Tyro3, but not that of Mertk, also inhibited platelet aggregation.
Conclusions:
These data suggest that Axl and Tyro3, but not Mertk, have an important role in platelet activation and thrombus formation, and mechanistically may do so by a pathway that regulates inside to outside signaling and heterotypic interactions via the extracellular domains of TAMs.
Insights
Tyrosine kinase receptors Axl and Tyro3, but not Mertk, are crucial for platelet activation and thrombus formation. Their deficiency impairs platelet aggregation and in vivo thrombosis, highlighting their roles in hemostasis.
Area of Science:
- * Hematology and Thrombosis Research
- * Molecular and Cellular Biology
- * Immunology and Inflammation
Background:
- * Tyro3, Axl, and Mertk (TAM) receptors are implicated in platelet activation and thrombosis.
- * The specific roles of individual TAM receptors in these processes remain unclear.
Purpose of the Study:
- * To elucidate the distinct roles of individual TAM receptors in platelet function and thrombus formation.
- * To investigate the molecular mechanisms underlying TAM receptor involvement in platelet signaling.
Main Methods:
- * Utilized single receptor-deficient platelets from TAM knockout mice.
- * Performed in vitro experiments using Glycoprotein VI (GPVI) agonists and thrombin.
- * Employed a laser-induced cremaster arterial injury model for in vivo thrombosis studies.
Main Results:
- * Axl or Tyro3 deficiency, unlike Mertk deficiency, significantly inhibited platelet aggregation, spreading, and P-selectin expression in vitro.
- * Axl-/- and Tyro3-/- mice exhibited reduced platelet thrombus formation in vivo.
- * GPVI agonist-induced signaling, including Syk and PLCγ2 phosphorylation, was diminished in Axl-/- and Tyro3-/- platelets.
Conclusions:
- * Axl and Tyro3, but not Mertk, play significant roles in platelet activation and thrombus formation.
- * These receptors may regulate platelet function through inside-to-outside signaling and heterotypic interactions.
- * The extracellular domains of Axl and Tyro3 are critical for their pro-thrombotic functions.
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