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Functional significance of differential eNOS translocation

机译:差异eNOS易位的功能意义

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摘要

Nitric oxide (NO) regulates flow and permeability. ACh and platelet-activating factor (PAF) lead to endothelial NO synthase (eNOS) phosphorylation and NO release. While ACh causes only vasodilation, PAF induces vasoconstriction and hyperpermeability. The key differential signaling mechanisms for discriminating between vasodilation and hyperpermeability are unknown. We tested the hypothesis that differential translocation may serve as a regulatory mechanism of eNOS to determine specific vascular responses. We used ECV-304 cells permanently transfected with eNOS-green fluorescent protein (ECVeNOS-GFP) and demonstrated that the agonists activate eNOS and reproduce their characteristic endothelial permeability effects in these cells. We evaluated eNOS localization by lipid raft analysis and immunofluorescence microscopy. After PAF and ACh, eNOS moves away from caveolae. eNOS distributes both in the plasma membrane and Golgi in control cells. ACh (10−5 M, 10−4 M) translocated eNOS preferentially to the trans-Golgi network (TGN) and PAF (10−7 M) preferentially to the cytosol. We suggest that PAF-induced eNOS translocation preferentially to cytosol reflects a differential signaling mechanism related to changes in permeability, whereas ACh-induced eNOS translocation to the TGN is related to vasodilation.
机译:一氧化氮(NO)调节流量和渗透率。 ACh和血小板活化因子(PAF)导致内皮NO合酶(eNOS)磷酸化和NO释放。 ACh仅引起血管舒张,而PAF引起血管收缩和高通透性。区分血管扩张和通透性的关键差异信号传导机制尚不清楚。我们检验了以下假设,即差异易位可能充当eNOS调节特定血管反应的调节机制。我们使用永久转染了eNOS-绿色荧光蛋白(ECVeNOS-GFP)的ECV-304细胞,并证明了激动剂激活eNOS并在这些细胞中再现其特征性内皮通透性。我们通过脂质筏分析和​​免疫荧光显微镜评估了eNOS的定位。在PAF和ACh之后,eNOS离开了小窝。 eNOS在质膜和高尔基体中都分布在对照细胞中。 ACh(10 −5 M,10 −4 M)优先将eNOS转移到反高尔基网络(TGN)和PAF(10 −7 M)优先于胞质溶胶。我们建议,PAF诱导的eNOS易位至胞质液反映了与通透性变化相关的差异信号传导机制,而ACh诱导的eNOS易位至TGN与血管舒张相关。

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