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LPS-mediated endothelial activation in pulmonary endothelial cells: role of Nox2-dependent IKK-β phosphorylation

机译:LPS介导的肺血管内皮细胞的内皮细胞活化:依赖Nox2的IKK-β磷酸化的作用

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摘要

Lipopolysaccharide (LPS)-mediated endothelial activation contributes to lung inflammation and alveolar remodeling seen in premature infants with bronchopulmonary dysplasia (BPD). The mechanisms underlying LPS-mediated oxidative stress and proinflammatory signaling in human pulmonary microvascular endothelial cells (HPMEC) remain unclear. We hypothesized that NADPH oxidase (Nox) mediates LPS-induced endothelial activation in HPMEC by regulating phosphorylation of Toll-like receptor (TLR) pathway proteins. LPS-induced expression of intercellular adhesion molecule 1 (ICAM-1) was associated with increased 2-OH-E+ (marker for superoxide formation) levels and was attenuated by apocynin and the Nox inhibitor, VAS2870. LPS triggered membrane translocation of p67phox, suggesting activation of Nox2. Silencing Nox2, but not Nox4, suppressed LPS-induced ICAM-1 expression in HPMEC. Immunoprecipitation studies showed that inhibitor of κ-B kinase-β (IKK-β) serine phosphorylation induced by LPS was inhibited by Nox2 silencing. We examined whether Nox2-dependent, LPS-mediated IKK-β phosphorylation was regulated by protein phosphatase 2A (PP2A) or TGF-β associated kinase-1 (TAK1) in HPMEC. LPS increased PP2A activity in HPMEC, and inhibition of PP2A did not alter LPS-mediated ICAM-1 expression but attenuated IKK-β phosphorylation. TAK1 inhibition decreased LPS-induced ICAM-1 expression in HPMEC, and Nox2 silencing attenuated LPS-mediated TAK1 phosphorylation (Thr184/187). We demonstrate that Nox2 regulates LPS-mediated endothelial activation in pulmonary endothelial cells by modulating phosphorylation of key kinases in the TLR signaling cascade. Our data support a novel mechanism by which Nox-dependent signaling regulates proinflammatory signaling in pulmonary endothelial cells. Inhibition of vascular Nox may potentially limit lung injury and alveolar remodeling caused by infections in BPD.
机译:脂多糖(LPS)介导的内皮细胞活化导致支气管肺发育不良(BPD)早产儿出现肺部炎症和肺泡重塑。 LPS介导的氧化应激和人类肺微血管内皮细胞(HPMEC)中的促炎信号转导的机制尚不清楚。我们假设NADPH氧化酶(Nox)通过调节Toll样受体(TLR)途径蛋白的磷酸化介导HPMEC中LPS诱导的内皮细胞活化。 LPS诱导的细胞间黏附分子1(ICAM-1)的表达与2-OH-E + (超氧化物形成的标志物)水平升高有关,并且被Apocynin和Nox抑制剂VAS2870减弱。 LPS触发p67phox的膜易位,提示Nox2激活。沉默Nox2,而不是Nox4,可以抑制LPS诱导的HPMEC中ICAM-1的表达。免疫沉淀研究表明,LPS诱导的κ-B激酶-β(IKK-β)丝氨酸磷酸化抑制剂被Nox2沉默抑制。我们检查了HPMEC中是否依赖于NOx2的LPS介导的IKK-β磷酸化受到蛋白磷酸酶2A(PP2A)或TGF-β相关激酶-1(TAK1)的调节。 LPS增加了HPMEC中PP2A的活性,而抑制PP2A不会改变LPS介导的ICAM-1表达,但会减弱IKK-β磷酸化。 TAK1抑制降低了HPMEC中LPS诱导的ICAM-1表达,而Nox2沉默减弱了LPS介导的TAK1磷酸化(Thr184 / 187)。我们证明,Nox2通过调节TLR信号级联反应中关键激酶的磷酸化,调节肺血管内皮细胞中LPS介导的内皮细胞活化。我们的数据支持一种新机制,通过该机制,依赖Nox的信号调节肺内皮细胞中的促炎信号。抑制血管Nox可能会限制BPD感染引起的肺损伤和肺泡重塑。

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