首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >SHIP represses Th2 skewing by inhibiting IL-4 production from basophils.
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SHIP represses Th2 skewing by inhibiting IL-4 production from basophils.

机译:SHIP通过抑制嗜碱性粒细胞产生IL-4来抑制Th2偏斜。

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We report that SHIP(-/-) mice, compared to SHIP(+/+) mice, are Th2 skewed with elevated serum IgE and twice as many splenic CD4(+) Th2 cells that, when stimulated with anti-CD3, produce more IL-4 and less IFN-gamma. Exploring the reason for this Th2 skewing, we found that freshly isolated SHIP(-/-) splenic and bone marrow basophils are present in elevated numbers and secrete far more IL-4 in response to IL-3 or to FcepsilonRI stimulation than do WT basophils. These SHIP(-/-) basophils markedly skew wild-type macrophage colony stimulating factor-derived macrophages toward an M2 phenotype, stimulate OT-II CD4(+) Th cells to differentiate into Th2 cells, and trigger SHIP(+/+) B cells to become IgE-producing cells. All these effects are completely abrogated with neutralizing anti-IL-4 Ab. Exploring the cell signaling pathways responsible for hyperproduction of IL-4 by SHIP(-/-) basophils, we found that IL-3-induced activation of the PI3K pathway is significantly enhanced and that PI3K inhibitors, especially a p110alpha inhibitor, dramatically suppresses IL-4 production from these cells. In vivo studies, in which basophils were depleted from mast cell-deficient SHIP(+/+) and SHIP(-/-) mice, confirmed the central role that basophils play in the Th2 skewing of naive SHIP-deficient mice. Taken together, these studies demonstrate that SHIP is a potent negative regulator of IL-4 production from basophils and thus may be a novel therapeutic target for Th1- and Th2-related diseases.
机译:我们报告说,与SHIP(+ / +)小鼠相比,SHIP(-/-)小鼠的Th2偏向于血清IgE升高,而脾脏CD4(+)Th2细胞的倍数则是抗CD3刺激时产生的两倍IL-4和更少的IFN-γ。探索这种Th2偏斜的原因,我们发现新鲜分离的SHIP(-/-)脾和骨髓嗜碱性粒细胞数量增加,并且与WT嗜碱性粒细胞相比,对IL-3或FcepsilonRI刺激产生的IL-4分泌更多。 。这些SHIP(-/-)嗜碱性粒细胞显着使野生型巨噬细胞集落刺激因子衍生的巨噬细胞偏向M2表型,刺激OT-II CD4(+)Th细胞分化为Th2细胞,并触发SHIP(+ / +)B细胞变成产生IgE的细胞。中和抗IL-4 Ab完全消除了所有这些作用。探索负责SHIP(-/-)嗜碱性粒细胞过度产生IL-4的细胞信号通路,我们发现IL-3诱导的PI3K通路活化显着增强,并且PI3K抑制剂(尤其是p110alpha抑制剂)显着抑制IL这些单元格产生-4。在体内研究中,肥大细胞缺陷的SHIP(+ / +)和SHIP(-/-)小鼠中的嗜碱性粒细胞被耗尽,证实了嗜碱性粒细胞在幼稚的SHIP缺陷小鼠的Th2偏斜中起着核心作用。综上所述,这些研究表明,SHIP是嗜碱性粒细胞产生IL-4的有效负调节剂,因此可能是Th1和Th2相关疾病的新型治疗靶标。

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