首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Novel Interaction of the Catalytic Subunit of Protein Phosphatase 2A with the Adaptor Protein CIN85 Suppresses Phosphatase Activity and Facilitates Platelet Outside-in αIIbβ3 Integrin Signaling
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A Novel Interaction of the Catalytic Subunit of Protein Phosphatase 2A with the Adaptor Protein CIN85 Suppresses Phosphatase Activity and Facilitates Platelet Outside-in αIIbβ3 Integrin Signaling

机译:磷酸酶2A催化亚基与衔接蛋白CIN85的新型相互作用可抑制磷酸酶活性并促进血小板外αIIbβ3整合素信号传导。

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摘要

The transduction of signals generated by protein kinases and phosphatases are critical for the ability of integrin αIIbβ3 to support stable platelet adhesion and thrombus formation. Unlike kinases, it remains unclear how serine/threonine phosphatases engage the signaling networks that are initiated following integrin ligation. Because protein-protein interactions form the backbone of signal transduction, we searched for proteins that interact with the catalytic subunit of protein phosphatase 2A (PP2Ac). In a yeast two-hybrid study, we identified a novel interaction between PP2Ac and an adaptor protein CIN85 (Cbl-interacting protein of 85 kDa). Truncation and alanine mutagenesis studies revealed that PP2Ac binds to the P3 block (396PAIPPKKPRP405) of the proline-rich region in CIN85. The interaction of purified PP2Ac with CIN85 suppressed phosphatase activity. Human embryonal kidney 293 αIIbβ3 cells overexpressing a CIN85 P3 mutant, which cannot support PP2Ac binding, displayed decreased adhesion to immobilized fibrinogen. Platelets contain the ∼85 kDa CIN85 protein along with the PP2Ac-CIN85 complex. A myristylated cell-permeable peptide derived from residues 395–407 of CIN85 protein (P3 peptide) disrupted the platelet PP2Ac-CIN85 complex and decreased αIIbβ3 signaling dependent functions such as platelet spreading on fibrinogen and thrombin-mediated fibrin clot retraction. In a phospho-profiling study P3 peptide treated platelets also displayed decreased phosphorylation of several signaling proteins including Src and GSK3β. Taken together, these data support a role for the novel PP2Ac-CIN85 complex in supporting integrin-dependent platelet function by dampening the phosphatase activity.
机译:蛋白激酶和磷酸酶产生的信号转导对于整合素αIIbβ3支持稳定的血小板粘附和血栓形成的能力至关重要。与激酶不同,尚不清楚丝氨酸/苏氨酸磷酸酶如何与整合素连接后启动的信号传导网络结合。因为蛋白质之间的相互作用形成了信号转导的主干,所以我们寻找了与蛋白质磷酸酶2A(PP2Ac)催化亚基相互作用的蛋白质。在酵母双杂交研究中,我们确定了PP2Ac与衔接蛋白CIN85(85 kDa的Cbl相互作用蛋白)之间的新型相互作用。截短和丙氨酸诱变研究表明,PP2Ac与CIN85中富含脯氨酸的P3嵌段( 396 PAIPPKKPRP 405 )结合。纯化的PP2Ac与CIN85的相互作用抑制了磷酸酶活性。过度表达不能支持PP2Ac结合的CIN85 P3突变体的人胚肾293αIIbβ3细胞显示出与固定化纤维蛋白原的粘附力降低。血小板含有约85 kDa的CIN85蛋白以及PP2Ac-CIN85复合物。源自CIN85蛋白395-407残基的肉豆蔻酰化的细胞可渗透肽(P3肽)破坏了血小板PP2Ac-CIN85复合物,并降低了αIIbβ3信号依赖的功能,例如血小板在纤维蛋白原上的扩散和凝血酶介导的纤维蛋白凝结回缩。在一项磷酸分析研究中,P3肽处理的血小板还显示出包括Src和GSK3β在内的几种信号蛋白的磷酸化水平降低。综上所述,这些数据通过抑制磷酸酶活性来支持新型PP2Ac-CIN85复合物在支持整合素依赖性血小板功能中的作用。

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