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Molecular Characterization of Helicobacter pylori VacA Induction of IL-8 in U937 Cells Reveals a Prominent Role for p38MAPK in Activating Transcription Factor-2 cAMP Response Element Binding Protein and NF-κB Activation

机译:U937细胞中幽门螺杆菌VacA诱导IL-8的分子表征揭示了p38MAPK在激活转录因子2cAMP反应元件结合蛋白和NF-κB激活中的重要作用

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摘要

Helicobacter pylori VacA induces multiple effects on susceptible cells, including vacuolation, mitochondrial damage, inhibition of cell growth, and enhanced cyclooxygenase-2 expression. To assess the ability of H. pylori to modulate the production of inflammatory mediators, we examined the mechanisms by which VacA enhanced IL-8 production by promonocytic U937 cells, which demonstrated the greatest VacA-induced IL-8 release of the cells tested. Inhibitors of p38 MAPK (SB203580), ERK1/2 (PD98059), IκBα ((E)-3-(4-methylphenylsulfonyl)-2-propenenitrile), Ca2+ entry (), and intracellular Ca2+ channels (dantrolene) blocked VacA-induced IL-8 production. Furthermore, an intracellular Ca2+ chelator (BAPTA-AM), which inhibited VacA-activated p38 MAPK, caused a dose-dependent reduction in VacA-induced IL-8 secretion by U937 cells, implying a role for intracellular Ca2+ in mediating activation of MAPK and the canonical NF-κB pathway. VacA stimulated translocation of NF-κBp65 to the nucleus, consistent with enhancement of IL-8 expression by activation of the NF-κB pathway. In addition, small interfering RNA of activating transcription factor (ATF)-2 or CREB, which is a p38MAPK substrate and binds to the AP-1 site of the IL-8 promoter, inhibited VacA-induced IL-8 production. VacA activated an IL-8 promoter containing an NF-IL-6 site, but not a mutated AP-1 or NF-κB site, suggesting direct involvement of the ATF-2/CREB binding region or NF-κB-binding regions in VacA-induced IL-8 promoter activation. Thus, in U937 cells, VacA directly increases IL-8 production by activation of the p38 MAPK via intracellular Ca2+ release, leading to activation of the transcription factors, ATF-2, CREB, and NF-κB.
机译:幽门螺杆菌VacA对易感细胞具有多种作用,包括空泡化,线粒体损伤,细胞生长抑制和环氧合酶-2表达增强。为了评估幽门螺杆菌调节炎性介质产生的能力,我们检查了VacA增强单核细胞U937细胞产生IL-8的机制,这证明了受试细胞最大的VacA诱导的IL-8释放。 p38 MAPK(SB203580),ERK1 / 2(PD98059),IκBα((E)-3-(4-甲基苯基磺酰基)-2-丙烯腈),Ca 2 + 进入()和细胞内抑制剂Ca 2 + 通道(双氢戊烯)阻断了VacA诱导的IL-8产生。此外,抑制VacA激活的p38 MAPK的细胞内Ca 2 + 螯合剂(BAPTA-AM)导致U937细胞的VacA诱导的IL-8分泌呈剂量依赖性降低,表明其作用在细胞内Ca 2 + 介导MAPK激活和经典的NF-κB通路中的作用。 VacA刺激NF-κBp65转运至细胞核,这与通过激活NF-κB途径增强IL-8表达有关。此外,激活转录因子(ATF)-2或CREB的小干扰RNA是p38MAPK底物,与IL-8启动子的AP-1位点结合,可抑制VacA诱导的IL-8产生。 VacA激活了一个包含NF-IL-6位点但不包含突变的AP-1或NF-κB位点的IL-8启动子,表明VacA中ATF-2 / CREB结合区或NF-κB结合区直接参与-诱导的IL-8启动子激活。因此,在U937细胞中,VacA通过细胞内Ca 2 + 释放激活p38 MAPK直接增加IL-8的产生,从而激活转录因子,ATF-2,CREB和NF- κB。

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