内皮- pdi是tnf α诱导的血管生成所必需的。

Free radical biology & medicine Pub Date : 2013-12-01 Epub Date: 2013-10-05 DOI:10.1016/j.freeradbiomed.2013.09.028
Livia de Lucca Camargo, Andrea Babelova, Anja Mieth, Andreas Weigert, Juliane Mooz, Krishnaraj Rajalingam, Heinrich Heide, Ilka Wittig, Lucia Rossetti Lopes, Ralf P Brandes
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引用次数: 28

摘要

蛋白质二硫异构酶(PDI)及其同源物是促进内质网中蛋白质折叠的氧化还原酶。内皮- pdi(也称为ERp46)在内皮细胞中高度表达。它属于PDI家族,但其生理功能在很大程度上是未知的。我们研究了内皮- pdi在内皮血管生成反应中的作用。刺激人脐静脉内皮细胞(TNFα (10ng/ml))可增加ERK1/2磷酸化。这种作用在很大程度上被Endo-PDI siRNA减弱,而JNK和p38 MAP激酶磷酸化与Endo-PDI无关。同样,tnf α刺激的NF-κB信号通过i -κB α降解以及tnf α诱导的ICAM表达不受Endo-PDI siRNA的影响。经非渗透性抑制剂和PDI中和抗体证实,Endo-PDI的作用不受细胞外硫醇交换或细胞表面PDI的介导。此外,外源性添加的PDI在Endo-PDI敲低后无法恢复ERK1/2的激活。这表明Endo-PDI通过维持Ras/Raf/MEK/ERK通路潜在地在细胞内起作用。事实上,通过G-LISA和Raf磷酸化测量,Endo-PDI的敲低减弱了Ras的激活。ERK激活通过转录因子AP-1影响基因表达,AP-1控制血管生成所需的两种蛋白酶MMP-9和组织蛋白酶B。tnf α刺激的MMP-9和组织蛋白酶B的诱导通过Endo-PDI的沉默而减少。因此,在球体生长实验中,抑制组织蛋白酶B或endodo - pdi siRNA可阻断tnf α刺激的血管生成反应。此外,Endo-PDI siRNA可减弱体外试管形成和体内基质血管生成对TNFα的反应。总之,我们的研究确定了Endo-PDI是ap -1驱动基因表达和内皮血管生成功能的一个新的、重要的介质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endo-PDI is required for TNFα-induced angiogenesis.

Protein disulfide isomerase (PDI) and its homologs are oxidoreductases facilitating protein folding in the ER. Endo-PDI (also termed ERp46) is highly expressed in endothelial cells. It belongs to the PDI family but its physiological function is largely unknown. We studied the role of Endo-PDI in endothelial angiogenic responses. Stimulation of human umbilical vein endothelial cells (with TNFα (10ng/ml) increased ERK1/2 phosphorylation. This effect was largely attenuated by Endo-PDI siRNA, whereas JNK and p38 MAP kinase phosphorylation was Endo-PDI independent. Similarly, TNFα-stimulated NF-κB signaling determined by IκBα degradation as well as TNFα-induced ICAM expression was unaffected by Endo-PDI siRNA. The action of Endo-PDI was not mediated by extracellular thiol exchange or cell surface PDI as demonstrated by nonpermeative inhibitors and PDI-neutralizing antibody. Moreover, exogenously added PDI failed to restore ERK1/2 activation after Endo-PDI knockdown. This suggests that Endo-PDI acts intracellularly potentially by maintaining the Ras/Raf/MEK/ERK pathway. Indeed, knockdown of Endo-PDI attenuated Ras activation measured by G-LISA and Raf phosphorylation. ERK activation influences gene expression by the transcriptional factor AP-1, which controls MMP-9 and cathepsin B, two proteases required for angiogenesis. TNFα-stimulated MMP-9 and cathepsin B induction was reduced by silencing of Endo-PDI. Accordingly, inhibition of cathepsin B or Endo-PDI siRNA blocked the TNFα-stimulated angiogenic response in the spheroid outgrowth assays. Moreover ex vivo tube formation and in vivo Matrigel angiogenesis in response to TNFα were attenuated by Endo-PDI siRNA. In conclusion, our study establishes Endo-PDI as a novel, important mediator of AP-1-driven gene expression and endothelial angiogenic function.

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