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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:可以通过组合由干细胞因子,粒细胞-巨噬细胞集落刺激因子和肿瘤坏死因子α组成的细胞因子在体外触发人CD34 +造血祖细胞(HPC)的树突状细胞(DC)分化。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,由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而表达了高水平的5-LO和5-LO活化蛋白。但是,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会导致DC和EOS-PX +细胞中5-LO的选择性激活显着下调,而5-LO激活蛋白则没有这种下调,并且在DC分化开始时添加时,也会阻止5-LO的下调。 5-LO上调。在依赖IL-4或IL-13的单核细胞-DC转分化过程中观察到了类似的效果。 5-LO的下调伴随15-LO-1的上调,产生15-LO-1 + 5-LO缺陷的DC。但是,转化生长因子β1抵消了IL-4对5-LO的抑制,但对15-LO-1的上调影响很小。因此,转化生长因子β1加IL-4产生了大的成熟DC,它们共同表达了两个LO。在所有DC表型和EOS-PX +细胞的所有细胞因子组合中,细胞核中5-LO的定位和细胞质中15-LO-1的定位得以维持。在没有IL-4的情况下,CD34 +衍生DC的主要类花生酸为5S-羟基二十碳四烯酸(5S-HETE)和白三烯B4,而IL-4处理的DC的主要类花生酸为15S-HETE和5S-15S-diHETE 。 IL-4 / IL-13的这些作用揭示了类二十烷酸形成的范式,该范式由单个白细胞谱系中的一个LO的抑制和另一个LO的刺激组成。

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