首页> 美国卫生研究院文献>Blood >Hemostasis Thrombosis and Vascular Biology: RGT a synthetic peptide corresponding to the integrin β3 cytoplasmic C-terminal sequence selectively inhibits outside-in signaling in human platelets by disrupting the interaction of integrin αIIbβ3 with Src kinase
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Hemostasis Thrombosis and Vascular Biology: RGT a synthetic peptide corresponding to the integrin β3 cytoplasmic C-terminal sequence selectively inhibits outside-in signaling in human platelets by disrupting the interaction of integrin αIIbβ3 with Src kinase

机译:止血血栓形成和血管生物学:RGT是与整合素β3细胞质C端序列相对应的合成肽可通过破坏整合素αIIbβ3与Src激酶的相互作用来选择性抑制人血小板的由内而外的信号传导。

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摘要

Mutational analysis has established that the cytoplasmic tail of the integrin β3 subunit binds c-Src (termed as Src in this study) and is critical for bidirectional integrin signaling. Here we show in washed human platelets that a cell-permeable, myristoylated RGT peptide (myr-RGT) corresponding to the integrin β3 C-terminal sequence dose-dependently inhibited stable platelet adhesion and spreading on immobilized fibrinogen, and fibrin clot retraction as well. Myr-RGT also inhibited the aggregation-dependent platelet secretion and secretion-dependent second wave of platelet aggregation induced by adenosine diphosphate, ristocetin, or thrombin. Thus, myr-RGT inhibited integrin outside-in signaling. In contrast, myr-RGT had no inhibitory effect on adenosine diphosphate-induced soluble fibrinogen binding to platelets that is dependent on integrin inside-out signaling. Furthermore, the RGT peptide induced dissociation of Src from integrin β3 and dose-dependently inhibited the purified recombinant β3 cytoplasmic domain binding to Src-SH3. In addition, phosphorylation of the β3 cytoplasmic tyrosines, Y747 and Y759, was inhibited by myr-RGT. These data indicate an important role for β3-Src interaction in outside-in signaling. Thus, in intact human platelets, disruption of the association of Src with β3 and selective blockade of integrin αIIbβ3 outside-in signaling by myr-RGT suggest a potential new antithrombotic strategy.
机译:突变分析已确定,整联蛋白β3亚基的胞质尾结合c-Src(在本研究中称为Src),并且对于双向整联蛋白信号传导至关重要。在这里,我们在洗涤的人血小板中显示出与整联蛋白β3C端序列相对应的细胞渗透性,肉豆蔻酰化的RGT肽(myr-RGT)剂量依赖性地抑制了稳定的血小板粘附和在固定的纤维蛋白原上的扩散以及纤维蛋白凝块的收缩。 Myr-RGT还抑制由二磷酸腺苷,瑞斯托菌素或凝血酶诱导的血小板凝集和血小板凝集的第二波。因此,myr-RGT抑制了整联蛋白由外而内的信号传导。相反,myr-RGT对二磷酸腺苷诱导的可溶性纤维蛋白原与血小板的结合没有抑制作用,而后者依赖于整联蛋白由内而外的信号传导。此外,RGT肽诱导Src与整联蛋白β3的解离,并剂量依赖性地抑制了纯化的重组β3胞质域与Src-SH3的结合。此外,myr-RGT抑制了β3细胞质酪氨酸Y 747 和Y 759 的磷酸化。这些数据表明β3-Src相互作用在外-内信号传导中的重要作用。因此,在完整的人类血小板中,通过myr-RGT破坏Src与β3的缔合并选择性阻断整合素αIIbβ3的由内而外的信号传导,提示了潜在的新抗栓策略。

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