Centre for Cardiovascular Sciences, Institute for Biomedical Research, College of Medical and Dental Sciences, University of Birmingham, Edgbaston, Birmingham, United Kingdom; and.
Ozgene Pty Ltd, Bentley, WA, Australia.
Blood. 2015 Jan 1;125(1):144-54. doi: 10.1182/blood-2014-05-579375. Epub 2014 Oct 28.
We have used a novel knockin mouse to investigate the effect of disruption of phosphotyrosine binding of the N-terminal SH2 domain of Syk on platelet activation by GPVI, CLEC-2, and integrin αIIbβ3. The Syk(R41Afl/fl) mouse was crossed to a PF4-Cre(+) mouse to induce expression of the Syk mutant in the megakaryocyte/platelet lineage. Syk(R41Afl/fl;PF4-Cre) mice are born at approximately 50% of the expected frequency and have a similar phenotype to Syk(fl/fl;PF4-Cre) mice, including blood-lymphatic mixing and chyloascites. Anastomosis of the venous and lymphatic vasculatures can be seen in the mesenteric circulation accounting for rapid and continuous mixing of the 2 vasculatures. Platelet activation by CLEC-2 and GPVI is abolished in Syk(R41Afl/fl;PF4-Cre) platelets. Syk phosphorylation on Tyr519/20 is blocked in CLEC-2-stimulated platelets, suggesting a model in which binding of Syk via its N-terminal SH2 domain regulates autophosphorylation. In contrast, outside-in signaling by integrin αIIbβ3 is not altered, but it is inhibited in the presence of inhibitors of Src and Syk tyrosine kinases. These results demonstrate that αIIbβ3 regulates Syk through an ITAM-independent pathway in mice and provide novel insight into the course of events underlying Syk activation and hemITAM phosphorylation by CLEC-2.
我们使用一种新型的敲入小鼠来研究 Syk N 端 SH2 结构域磷酸酪氨酸结合破坏对 GPVI、CLEC-2 和整合素 αIIbβ3 激活血小板的影响。Syk(R41Afl/fl) 小鼠与 PF4-Cre(+) 小鼠杂交,以诱导 Syk 突变在巨核细胞/血小板谱系中的表达。Syk(R41Afl/fl;PF4-Cre) 小鼠以约 50%的预期频率出生,具有与 Syk(fl/fl;PF4-Cre) 小鼠相似的表型,包括血液-淋巴混合和胆汁性腹水。肠系膜循环中可以看到静脉和淋巴管的吻合,导致两种血管的快速和持续混合。CLEC-2 和 GPVI 激活血小板时,Syk(R41Afl/fl;PF4-Cre) 血小板中的血小板激活被消除。CLEC-2 刺激的血小板中 Syk 的 Tyr519/20 磷酸化被阻断,表明一种模型,其中 Syk 通过其 N 端 SH2 结构域结合调节自身磷酸化。相比之下,整合素 αIIbβ3 的外向信号没有改变,但在Src 和 Syk 酪氨酸激酶抑制剂存在下被抑制。这些结果表明,αIIbβ3 通过非 ITAM 依赖性途径在小鼠中调节 Syk,并为 Syk 激活和 CLEC-2 介导的 hemITAM 磷酸化的事件过程提供了新的见解。