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血小板蛋白激酶 C 底物 pleckstrin 直接结合到 SDPR 蛋白上。

The platelet protein kinase C substrate pleckstrin binds directly to SDPR protein.

机构信息

Department of Pathology, McMaster University, Hamilton, ON, Canada.

出版信息

Platelets. 2009 Nov;20(7):446-57. doi: 10.3109/09537100903137314.

Abstract

Pleckstrin is a modular platelet protein consisting of N- and C-terminal pleckstrin homology (PH) domains, a central dishevelled egl10 and pleckstrin (DEP) domain and a phosphorylation region. Following agonist-induced platelet stimulation, dimeric pleckstrin translocates to the plasma membrane, is phosphorylated and then monomerizes. A recent study found that pleckstrin null platelets from a knockout mouse have a defect in granule secretion, actin polymerization and aggregation. However, the mechanism of pleckstrin signaling for this function is unknown. Our recent studies have led to the identification of a novel pleckstrin-binding protein, serum deprivation response protein (SDPR), by co-immunoprecipitation, GST-pulldowns and nanospray quadruple time of flight mass spectrometry. We show that this interaction occurs directly through N-terminal sequences of pleckstrin. Both pleckstrin and SDPR are phosphorylated by protein kinase C (PKC), but the interaction between pleckstrin and SDPR was shown to be independent of PKC inhibition or activation. These results suggest that SDPR may facilitate the translocation of nonphosphorylated pleckstrin to the plasma membrane in conjunction with phosphoinositides that bind to the C-terminal PH domain. After binding of pleckstrin to the plasma membrane, its phosphorylation by PKC exerts downstream effects on platelet aggregation/secretion.

摘要

Pleckstrin 是一种模块化血小板蛋白,由 N 端和 C 端的 pleckstrin 同源(PH)结构域、一个中央盘状蛋白 egl10 和 pleckstrin(DEP)结构域和一个磷酸化区域组成。在激动剂诱导的血小板刺激后,二聚体的 pleckstrin 易位到质膜,被磷酸化,然后单体化。最近的一项研究发现,来自敲除小鼠的 pleckstrin 缺失血小板在颗粒分泌、肌动蛋白聚合和聚集方面存在缺陷。然而,pleckstrin 信号传导的这种功能的机制尚不清楚。我们最近的研究通过共免疫沉淀、GST 下拉和纳米喷雾四重飞行时间质谱鉴定了一种新的 pleckstrin 结合蛋白,即血清剥夺反应蛋白(SDPR)。我们表明这种相互作用直接通过 pleckstrin 的 N 端序列发生。pleckstrin 和 SDPR 都被蛋白激酶 C(PKC)磷酸化,但 pleckstrin 和 SDPR 之间的相互作用被证明不依赖于 PKC 的抑制或激活。这些结果表明,SDPR 可能通过与结合到 C 端 PH 结构域的磷酸肌醇结合,促进非磷酸化的 pleckstrin 向质膜的易位。在 pleckstrin 与质膜结合后,PKC 对其的磷酸化对血小板聚集/分泌产生下游影响。

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