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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Erythrocyte plasma membrane-bound ERK1/2 activation promotes ICAM-4-mediated sickle red cell adhesion to endothelium
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Erythrocyte plasma membrane-bound ERK1/2 activation promotes ICAM-4-mediated sickle red cell adhesion to endothelium

机译:红细胞质膜结合的ERK1 / 2激活促进ICAM-4介导的镰状红细胞与内皮的粘附

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The core pathology of sickle cell disease (SCD) starts with the erythrocyte (RBC). Aberration in MAPK/ERK1/2 signaling, which can regulate cell adhesion, occurs in diverse pathologies. Because RBCs contain abundant ERK1/2, we predicted that ERK1/2 is functional in sickle (SS) RBCs and promotes adherence, a hallmark of SCD. ERK1/2 remained active in SS but not normal RBCs. β2-adrenergic receptor stimulation by epinephrine can enhance ERK1/2 activity only in SS RBCs via PKA- and tyrosine kinase p72 syk-dependent pathways. ERK signaling is implicated in RBC ICAM-4 phosphorylation, promoting SS RBC adhesion to the endothelium. SS RBC adhesion and phosphorylation of both ERK and ICAM-4 all decreased with continued cell exposure to epinephrine, implying that activation of ICAM-4-mediated SS RBC adhesion is temporally associated with ERK1/2 activation. Furthermore, recombinant ERK2 phosphorylated α- and β-adducins and dematin at the ERK consensus motif. Cytoskeletal protein 4.1 also showed dynamic phosphorylation but not at the ERK consensus motif. These results demonstrate thatERKactivation induces phosphorylation of cytoskeletal proteins and the adhesion molecule ICAM-4, promoting SS RBC adhesion to the endothelium. Thus, blocking RBC ERK1/2 activation, such as that promoted by catecholamine stress hormones, could ameliorate SCD pathophysiology.
机译:镰状细胞疾病(SCD)的核心病理始于红细胞(RBC)。可以调节细胞粘附的MAPK / ERK1 / 2信号转导的异常发生在多种病理中。由于RBC包含丰富的ERK1 / 2,因此我们预测ERK1 / 2在镰刀(SS)RBC中具有功能并促进粘附,这是SCD的标志。 ERK1 / 2在SS中保持活跃,但在正常RBC中不活跃。肾上腺素刺激β2-肾上腺素能仅通过PKA和酪氨酸激酶p72 syk依赖性途径增强SS RBC中的ERK1 / 2活性。 ERK信号传导与RBC ICAM-4磷酸化有关,从而促进SS RBC与内皮的粘附。随着细胞继续暴露于肾上腺素,SS RBC粘附和ERK和ICAM-4的磷酸化均降低,这表明ICAM-4介导的SS RBC粘附的激活在时间上与ERK1 / 2激活相关。此外,重组ERK2在ERK共有基序处磷酸化了α-和β-adducins和dematin。细胞骨架蛋白4.1也显示动态磷酸化,但不在ERK共有基序上。这些结果证明ERK激活诱导细胞骨架蛋白和粘附分子ICAM-4的磷酸化,从而促进SS RBC对内皮的粘附。因此,阻断RBC ERK1 / 2活化(如儿茶酚胺应激激素促进的活化)可以改善SCD病理生理。

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