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首页> 外文期刊>Shock : >ETS-RELATED GENE ACTIVATION PRESERVES ADHERENS JUNCTIONS AND PERMEABILITY IN MICROVASCULAR ENDOTHELIAL CELLS
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ETS-RELATED GENE ACTIVATION PRESERVES ADHERENS JUNCTIONS AND PERMEABILITY IN MICROVASCULAR ENDOTHELIAL CELLS

机译:ETS-RELATED基因激活保留ADHERENS连接和微血管的渗透性内皮细胞

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摘要

ABSTRACT—ERG (ETS-related gene) is a member of the ETS (Erythroblast-transformation specific) family of transcription factors abundantly present in vascular endothelial cells. Recent studies demonstrate that ERG has important roles in blood vessel stability and angiogenesis. However, it is unclear how ERG is potentially involved in microvascular barrier functions and permeability. A wide variety of diseases and clinical conditions including trauma-hemorrhagic shock and burn injury are associated with microvascular dysfunctions, which causes excessive microvascular permeability, tissue edema and eventually, multiple organ dysfunction and death. The main purpose of this study was to determine the specific role of ERG in regulating microvascular permeability in human lung microvascular endothelial cells (HLMEC) and to evaluate if exogenous ERG will protect the barrier. The HLMECs were grown on Transwell inserts as monolayers and were transfected with ERG CRISPR/cas9 knockdown plasmid, ERG CRISPR activation plasmid, recombinant ERG protein or their respective controls. Recombinant vascular endothelial growth factor (VEGF) was used as an inducer of permeability for evaluating the effect of ERG activation on permeability. Changes in barrier integrity and permeability were studied using monolayer permeability assay and immunofluorescence of adherens junction proteins (VE-cadherin and b-catenin) respectively. CRISPR/cas9-based ERG knockdown as well as VEGF treatment induced monolayer hyperpermeability VE-cadherin, and b-catenin junctional relocation and cytoskeletal F-actin stress fiber formation. CRISPR based ERG activation and recombinant ERG transfection attenuated VEGF-induced monolayer hyperpermeability. ERG activation preserved the adherens junctions and cytoskeleton. These results demonstrate that ERG is a potent regulator of barrier integrity and permeability in human lung microvascular endothelial cells and endogenously or exogenously enhancing ERG provides protection against barrier dysfunction and hyperpermeability.
机译:ABSTRACT-ERG (ETS-related基因)的一员ETS (Erythroblast-transformation具体)的家庭转录因子中大量存在血管内皮细胞。在血证明ERG有着重要的作用船稳定和血管生成。不清楚ERG可能参与微血管屏障功能和渗透率。各种各样的疾病和临床包括trauma-hemorrhagic冲击和条件燃烧伤害与微血管相关联障碍,导致过度微血管通透性,组织水肿和最终,多个器官功能障碍和死亡。本研究的主要目的是确定ERG在调节的特定角色在人类肺微血管通透性微血管内皮细胞(HLMEC)和评估如果外生ERG将保护障碍。插入层和转染了ERG CRISPR / cas9击倒的质粒,ERG CRISPR激活质粒,ERG蛋白质或重组各自的控制。血管内皮生长因子(VEGF)是用作诱导物的渗透性评价效果在渗透率ERG激活。屏障完整性和渗透性进行了研究使用单层通透性测定免疫荧光的adherens结蛋白分别(VE-cadherin和b-catenin)。CRISPR / cas9-based ERG击倒以及VEGF治疗诱导单层研究进展VE-cadherin, b-catenin交界搬迁和细胞骨架构成的应力纤维的形成。CRISPR ERG激活和ERG重组为基础转染减毒VEGF-induced单层研究进展。和粘合连接处并且细胞骨架。结果表明,ERG是有效的监管机构的屏障完整性和通透性在人类肺微血管内皮细胞内生或增强ERG体内提供保护屏障功能障碍和研究进展。

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