首页> 外文期刊>Journal of neuroinflammation >Regulatory effects of the JAK3/STAT1 pathway on the release of secreted phospholipase A2-IIA in microvascular endothelial cells of the injured brain
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Regulatory effects of the JAK3/STAT1 pathway on the release of secreted phospholipase A2-IIA in microvascular endothelial cells of the injured brain

机译:JAK3 / STAT1通路对受伤脑微血管内皮细胞分泌磷脂酶A 2 -IIA释放的调节作用

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Background Secreted phospholipase A2-IIA (sPLA2-IIA) is an inducible enzyme released under several inflammatory conditions. It has been shown that sPLA2-IIA is released from rat brain astrocytes after inflammatory stimulus, and lipopolysaccharide (LPS) and nitric oxide (NO) have been implicated in regulation of this release. Here, brain microvascular endothelial cells (BMVECs) were treated with LPS to uncover whether sPLA2-IIA was released, whether nitric oxide regulated this release, and any related signal mechanisms. Methods Supernatants were collected from primary cultures of BMVECs. The release of sPLA2-IIA, and the expression of inducible nitric oxide synthase (iNOS), phospho-JAK3, phospho-STAT1, total JAK3 and STAT1, β-actin, and bovine serum albumin (BSA) were analyzed by Western blot or ELISA. NO production was calculated by the Griess reaction. sPLA2 enzyme activity was measured with a fluorometric assay. Specific inhibitors of NO (L-NAME and aminoguanidine, AG), JAK3 (WHI-P154,WHI), STAT1 (fludarabine, Flu), and STAT1 siRNA were used to determine the involvement of these molecules in the LPS-induced release of sPLA2-IIA from BMVECs. Nuclear STAT1 activation was tested with the EMSA method. The monolayer permeability of BMVECs was measured with a diffusion assay using biotinylated BSA. Results Treatment of BMVECs with LPS increased the release of sPLA2-IIA and nitrite into the cell culture medium up to 24?h. Pretreatment with an NO donor, sodium nitroprusside, decreased LPS-induced sPLA2-IIA release and sPLA2 enzyme activity, and enhanced the expression of iNOS and nitrite generation after LPS treatment. Pretreatment with L-NAME, AG, WHI-P154, or Flu notably reduced the expression of iNOS and nitrite, but increased sPLA2-IIA protein levels and sPLA2 enzyme activity. In addition, pretreatment of the cells with STAT1 siRNA inhibited the phosphorylation of STAT1, iNOS expression, and nitrite production, and enhanced the release of sPLA2-IIA. Pretreatment with the specific inhibitors of NOS, JAK2, and STAT3 decreased the permeability of BMVECs. In contrast, inhibition of sPLA2-IIA release increased cell permeability. These results suggest that sPLA2-IIA expression is regulated by the NO-JAK3-STAT1 pathway. Importantly, sPLA2-IIA augmentation could protect the LPS-induced permeability of BMVECs. Conclusion Our results demonstrate the important action of sPLA2-IIA in the permeability of microvascular endothelial cells during brain inflammatory events. The sPLA2 and NO pathways can be potential targets for the management of brain MVEC injuries and related inflammation.
机译:背景技术分泌的磷脂酶A2-IIA(sPLA2-IIA)是在几种炎症条件下释放的可诱导酶。已经显示,在炎症刺激后,sPLA2-IIA从大鼠脑星形胶质细胞释放,并且脂多糖(LPS)和一氧化氮(NO)参与了该释放的调节。在这里,用LPS处理脑微血管内皮细胞(BMVEC),以发现sPLA2-IIA是否释放,一氧化氮是否调节了该释放以及任何相关的信号机制。方法从BMVECs的原代培养物中收集上清液。通过Western印迹或ELISA分析了sPLA2-IIA的释放以及诱导型一氧化氮合酶(iNOS),磷酸化JAK3,磷酸化STAT1,总JAK3和STAT1,β-肌动蛋白和牛血清白蛋白(BSA)的表达。通过格里斯反应没有产生产物。 sPLA2酶活性用荧光测定法测量。使用NO(L-NAME和氨胍,AG),JAK3(WHI-P154,WHI),STAT1(氟达拉滨,Flu)和STAT1 siRNA的特异性抑制剂来确定这些分子是否参与LPS诱导的sPLA2释放-来自BMVEC的IIA。核STAT1激活用EMSA方法进行了测试。 BMVEC的单层渗透性是使用生物素化的BSA通过扩散测定法测量的。结果LPS处理BMVECs可以延长sPLA2-IIA和亚硝酸盐向细胞培养基中的释放长达24小时。用NO供体预处理硝普钠可降低LPS诱导的LPS诱导的sPLA2-IIA释放和sPLA2酶活性,并增强iPS的表达和LPS处理后产生的亚硝酸盐。用L-NAME,AG,WHI-P154或Flu进行的预处理显着降低了iNOS和亚硝酸盐的表达,但增加了sPLA2-IIA蛋白水平和sPLA2酶活性。此外,用STAT1 siRNA预处理细胞可抑制STAT1的磷酸化,iNOS表达和亚硝酸盐生成,并增强sPLA2-IIA的释放。用特定的NOS,JAK2和STAT3抑制剂预处理可降低BMVEC的通透性。相反,抑制sPLA2-IIA释放会增加细胞通透性。这些结果表明,sPLA2-IIA表达受NO-JAK3-STAT1途径调控。重要的是,sPLA2-IIA的增加可以保护LPS诱导的BMVECs的通透性。结论我们的结果证明了sPLA2-IIA在脑部炎症事件中对微血管内皮细胞通透性的重要作用。 sPLA2和NO途径可能是处理大脑MVEC损伤和相关炎症的潜在靶标。

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