首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Cysteinyl leukotriene 2 receptor and protease-activated receptor 1 activate strongly correlated early genes in human endothelial cells
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Cysteinyl leukotriene 2 receptor and protease-activated receptor 1 activate strongly correlated early genes in human endothelial cells

机译:半胱氨酰白三烯2受体和蛋白酶激活的受体1激活人类内皮细胞中高度相关的早期基因

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摘要

Cysteinyl leukotrienes (cysLT), i.e., LTC4, LTD4, and LTE4, are lipid mediators derived from the 5-lipoxygenase pathway, and the cysLT receptors cysLT1-R/cysLT2-R mediate inflammatory tissue reactions. Although endothelial cells (ECs) predominantly express cysLT2-Rs, their role in vascular biology remains to be fully understood. To delineate cysLT2-R actions, we stimulated human umbilical vein EC with LTD4 and determined early induced genes. We also compared LTD4 effects with those induced by thrombin that binds to protease-activated receptor (PAR)-1. Stringent filters yielded 37 cysLT2-R- and 34 PAR-1-up-regulated genes (>2.5-fold stimulation). Most LTD4-regulated genes were also induced by thrombin. Moreover, LTD4 plus thrombin augmented gene expression when compared with each agonist alone. Strongly induced genes were studied in detail: Early growth response (EGR) and nuclear receptor subfamily 4 group A transcription factors; E-selectin; CXC ligand 2; IL-8; a disintegrin-like and metalloprotease (reprolysin type) with thrombospondin type 1 motif 1 (ADAMTS1); Down syndrome critical region gene 1 (DSCR1); tissue factor (TF); and cyclooxygenase 2. Transcripts peaked at ≈60 min, were unaffected by a cysLT1-R antagonist, and were superinduced by cycloheximide. The EC phenotype was markedly altered: LTD4 induced de novo synthesis of EGR1 protein and EGR1 localized in the nucleus; LTD4 up-regulated IL-8 formation and secretion; and LTD4 raised TF protein and TF-dependent EC procoagulant activity. These data show that cysLT2-R activation results in a proinflammatory EC phenotype. Because LTD4 and thrombin are likely to be formed concomitantly in vivo, cysLT2-R and PAR-1 may cooperate to augment vascular injury.
机译:半胱氨酰白三烯(cysLT)(即LTC4,LTD4和LTE4)是衍生自5-脂氧合酶途径的脂质介体,而cysLT受体cysLT1-R / cysLT2-R介导炎性组织反应。尽管内皮细胞(ECs)主要表达cysLT2-Rs,但它们在血管生物学中的作用仍有待充分了解。为了描述cysLT2-R的作用,我们用LTD4刺激了人的脐静脉EC,并确定了早期诱导的基因。我们还比较了LTD4的作用与凝血酶诱导的与蛋白酶激活受体(PAR)-1结合的作用。严格的过滤器产生37 cysLT2-R-和34 PAR-1-上调的基因(> 2.5倍的刺激)。大多数LTD4调控的基因也被凝血酶诱导。此外,与单独的每种激动剂相比,LTD4加凝血酶可增强基因表达。对强诱导基因进行了详细研究:早期生长反应(EGR)和核受体亚家族4组A转录因子; E-选择素CXC配体2; IL-8;具有血小板反应蛋白1型基序1(ADAMTS1)的双整合素样金属蛋白酶(relylysin型);唐氏综合症关键区域基因1(DSCR1);组织因子(TF);和环氧合酶2。转录物在≈60分钟达到峰值,不受cysLT1-R拮抗剂的影响,并被环己酰亚胺超诱导。 EC表型发生了明显变化:LTD4诱导从头合成EGR1蛋白和EGR1定位在细胞核中; LTD4上调IL-8的形成和分泌; LTD4提高了TF蛋白和TF依赖性EC促凝活性。这些数据表明,cysLT 2 -R激活会导致促炎性EC表型。由于LTD 4 和凝血酶可能在体内同时形成,因此cysLT 2 -R和PAR-1可能协同作用,加剧了血管损伤。

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