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Interleukin-11 dependent NFkB activation in cultured intestinal epithelial cells.

机译:培养的肠上皮细胞中白介素11依赖性NFkB激活。

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摘要

Interleukin-11 (IL-11) is a cytokine that promotes intestinal epithelial resistance to injury, however the mechanisms remain incompletely understood. Evidence from the Ropeleski Lab supports IL-11 dependent activation of the transcription factor Nuclear Factor κB (NFκB), without the degradation of the inhibitor κB (IκB), which deviates from the classical mechanism involving proteolytic processing of IκB. Also, IL-11 mediates the modulation of genes associated with healing, such as cyclooxygenase-2 (COX-2). It was hypothesized that IL-11 activates NFκB in intestinal epithelial cells by direct modulation of NFκB which, in a physiological setting, stimulates restitution during the healing response in the gut.;IL-11 treatment was associated with the nuclear accumulation of phospho-p65 ser536 in epithelial cell lines. Inhibition of PI3K/Akt signaling with LY294002 and AktiVIII suggested a partial reduction in phospho-p65 Ser536 while inhibition of MEK1,2 signaling with U0126 indicated almost a complete abrogation of phospho-p65Ser536 accumulation in the nucleus. Inhibition of inhibitor of κB kinase-β (IKKβ) with SC-514 also revealed a strong attenuation of IL-11 induced phospho-p65 Ser536. Inhibition of p90RSK1 with SL0101 was inconsistent but suggested a partial blockage of phospho-p65Ser536 whereas inhibition of Src kinase with PP2, did not affect phospho-p65Ser536 in IL-11 treated IEC-18 cells. There was no increased binding of p65 to the κB binding motif on DNA after IL-11 treatment. In mechanically wounded cells treated with IL-11, nuclear phospho-p65Ser536 was unaffected; however there was an evident potentiation of wound-induced COX-2 expression compared to untreated cells.;In conclusion, IL-11 activates NFκB signaling in a non-classical manner through the phosphorylation of the p65 subunit. The predominant pathway appears to involve IKK and MEK signaling. Also, IL-11 modulates COX-2 expression in response to wounding in intestinal epithelial cells.;Both cultured rat IEC-18 and human HIEC epithelial crypt cells were used as models to investigate whether the effect of IL-11 was species-specific. Activated NFκB is targeted to the nucleus therefore immunoblotting of nuclear extracts for expression of NFκB protein subunits including p65, activated p65 (phospho-p65Ser536), p50, and RelB, as well as by immunofluorescent detection of p65 were used. Inhibition of IL-11 signaling was carried out using various pharmacological inhibitors in order to determine their effect on p65 phosphorylation. Mechanically wounded cells were used as a model of gut injury and restitution where immunoblotting was used to examine IL-11 dependent effects on phospho-p65Ser536 and COX-2 expression. The binding of p65 to the κB binding site on DNA was detected with an ELISA-based system.
机译:白细胞介素11(IL-11)是一种细胞因子,可促进肠道上皮对损伤的抵抗力,但其机理尚不完全清楚。 Ropeleski实验室提供的证据支持转录因子核因子κB(NFκB)依赖IL-11的激活,而抑制剂κB(IκB)却没有降解,这与涉及IκB蛋白水解加工的经典机理不同。同样,IL-11介导与愈合相关的基因的调节,例如环氧合酶2(COX-2)。假设IL-11通过直接调节NFκB激活肠上皮细胞中的NFκB,在生理环境中,该NFκB在肠道愈合反应中刺激恢复原状。IL-11治疗与磷酸化p65的核积累有关上皮细胞系中的 ser536 。 LY294002和AktiVIII对PI3K / Akt信号的抑制表明磷酸化p65 Ser536 的部分降低,而U0126对MEK1,2信号的抑制表明磷酸化p65 Ser536几乎完全被废除。在核中积累。 SC-514抑制κB激酶-β(IKKβ)抑制剂也显示IL-11诱导的磷酸化p65 Ser536 的强烈减弱。 SL0101对p90 RSK1 的抑制作用不一致,但提示部分磷酸化p65 Ser536 被阻断,而PP2对Src激酶的抑制作用并不影响磷酸化p65 Ser536。 在IL-11处理的IEC-18细胞中。 IL-11处理后,p65与DNA上的κB结合基序的结合没有增加。在用IL-11处理的机械损伤细胞中,核磷酸化p65 Ser536 不受影响。然而,与未处理的细胞相比,伤口诱导的COX-2表达明显增强。总之,IL-11通过p65亚基的磷酸化以非经典方式激活NFκB信号传导。主要途径似乎涉及IKK和MEK信号传导。此外,IL-11响应肠上皮细胞的损伤而调节COX-2的表达。将培养的大鼠IEC-18和人HIEC上皮隐窝细胞均用作模型,以研究IL-11的作用是否具有物种特异性。活化的NFκB靶向细胞核,因此可对核提取物进行免疫印迹,以表达NFκB蛋白亚基,包括p65,活化的p65(phospho-p65 Ser536 ),p50和RelB,以及通过免疫荧光检测p65被使用。为了确定它们对p65磷酸化的作用,使用了多种药理学抑制剂对IL-11信号进行了抑制。机械损伤的细胞被用作肠道损伤和恢复的模型,其中免疫印迹被用来检查IL-11对磷酸化p65 Ser536 和COX-2表达的依赖性作用。用基于ELISA的系统检测p65与DNA上的κB结合位点的结合。

著录项

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Biology Molecular.;Biology Cell.
  • 学位 M.Sc.
  • 年度 2008
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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