首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >IL-4 determines eicosanoid formation in dendritic cells by down-regulation of 5-lipoxygenase and up-regulation of 15-lipoxygenase 1 expression
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IL-4 determines eicosanoid formation in dendritic cells by down-regulation of 5-lipoxygenase and up-regulation of 15-lipoxygenase 1 expression

机译:IL-4通过以下方法确定树突状细胞中类花生酸的形成 5-脂氧合酶的下调和β-脂氧合酶的上调 15-脂氧合酶1表达

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摘要

Dendritic cell (DC) differentiation from human CD34+ hematopoietic progenitor cells (HPCs) can be triggered in vitro by a combination of cytokines consisting of stem cell factor, granulocyte-macrophage colony-stimulating factor, and tumor necrosis factor α. The immune response regulatory cytokines, IL-4 and IL-13, promote DC maturation from HPCs, induce monocyte-DC transdifferentiation, and selectively up-regulate 15-lipoxygenase 1 (15-LO-1) in blood monocytes. To gain more insight into cytokine-regulated eicosanoid production in DCs we studied the effects of IL-4/IL-13 on LO expression during DC differentiation. In the absence of IL-4, DCs that had been generated from CD34+ HPCs in response to stem cell factor/granulocyte-macrophage colonystimulating factor/tumor necrosis factor α expressed high levels of 5-LO and 5-LO activating protein. However, a small subpopulation of eosinophil peroxidase+ (EOS-PX) cells significantly expressed 15-LO-1. Addition of IL-4 to differentiating DCs led to a marked and selective down-regulation of 5-LO but not of 5-LO activating protein in DCs and in EOS-PX+ cells and, when added at the onset of DC differentiation, also prevented 5-LO up-regulation. Similar effects were observed during IL-4- or IL-13-dependent monocyte-DC transdifferentiation. Down-regulation of 5-LO was accompanied by up-regulation of 15-LO-1, yielding 15-LO-1+ 5-LO-deficient DCs. However, transforming growth factor β1 counteracted the IL-4-dependent inhibition of 5-LO but only minimally affected 15-LO-1 up-regulation. Thus, transforming growth factor β1 plus IL-4 yielded large mature DCs that coexpress both LOs. Localization of 5-LO in the nucleus and of 15-LO-1 in the cytosol was maintained at all cytokine combinations in all DC phenotypes and in EOS-PX+ cells. In the absence of IL-4, major eicosanoids of CD34+-derived DCs were 5S-hydroxyeicosatetraenoic acid (5S-HETE) and leukotriene B4, whereas the major eicosanoids of IL-4-treated DCs were 15S-HETE and 5S-15S-diHETE. These actions of IL-4/IL-13 reveal a paradigm of eicosanoid formation consisting of the inhibition of one and the stimulation of another LO in a single leukocyte lineage.
机译:人CD34 + 造血祖细胞(HPC)的树突状细胞(DC)分化可通过干细胞因子,粒细胞-巨噬细胞集落刺激因子和肿瘤坏死等细胞因子的组合在体外触发因子α。免疫应答调节细胞因子IL-4和IL-13促进HPC的DC成熟,诱导单核细胞-DC转分化,并选择性上调血液单核细胞中的15-脂氧合酶1(15-LO-1)。为了深入了解DC中细胞因子调节的类花生酸的产生,我们研究了DC分化过程中IL-4 / IL-13对LO表达的影响。在没有IL-4的情况下,CD34 + HPC产生的DC响应干细胞因子/粒细胞巨噬细胞集落刺激因子/肿瘤坏死因子α而表达高水平的5-LO和5 -LO活化蛋白。然而,一小部分嗜酸性粒细胞过氧化物酶 + (EOS-PX)细胞显着表达15-LO-1。在分化的DC中添加IL-4导致5-LO显着选择性的下调,但不能导致 DC和EOS-PX + 细胞中的5-LO活化蛋白,以及 在DC分化开始时添加,也可以防止5-LO 上调。在IL-4-或 IL-13依赖性单核细胞-DC转分化。下调 5-LO伴随15-LO-1的上调,产生 15-LO-1 + 5 LO缺失的DC。但是,改变增长 β1因子抵消了IL-4对5-LO的抑制作用,但仅 影响最小的15-LO-1上调。因此,改变增长 β1因子加IL-4产生可同时表达两个LO的大型成熟DC。 5-LO在细胞核中的定位和15-LO-1在细胞质中的定位是 在所有DC表型和 EOS-PX + 单元格。在没有IL-4的情况下,主要的类花生酸 CD34 + 衍生的DC为5S-羟基二十碳四烯酸 (5S-HETE)和白三烯B4,而主要的类花生酸 经IL-4处理的DC分别为15S-HETE和5S-15S-diHETE。这些动作 IL-4 / IL-13揭示类二十烷酸形成的范式包括 抑制一个LO并刺激另一个LO 白细胞谱系。

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