首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Heligmosomoides polygyrus bakeri Infection Decreases Smad7 Expression in Intestinal CD4(+) T Cells, Which Allows TGF-beta to Induce IL-10-Producing Regulatory T Cells That Block Colitis
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Heligmosomoides polygyrus bakeri Infection Decreases Smad7 Expression in Intestinal CD4(+) T Cells, Which Allows TGF-beta to Induce IL-10-Producing Regulatory T Cells That Block Colitis

机译:Heligmosomoides Polygryrus Bakeri感染降低肠道CD4(+)T细胞中的Smad7表达,其允许TGF-β诱导IL-10产生的调节性T细胞阻断结肠炎

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摘要

Helminthic infections modulate host immunity and may protect their hosts from developing immunological diseases like inflammatory bowel disease. Induction of regulatory T cells (Tregs) may be an important part of this protective process. Heligmosomoides polygyrus bakeri infection also promotes the production of the regulatory cytokines TGF-beta and IL-10 in the gut. In the intestines, TGF-beta helps induce regulatory T cells. This study used Foxp3/IL-10 double reporter mice to investigate the effect of TGF-beta on the differentiation of colon and mesenteric lymph node-derived murine Foxp3(-) IL-10(-) CD4(+) T cells into their regulatory phenotypes. Foxp3(-) IL-10(-) CD4(+) T cells from H. polygyrus bakeri-infected mice, as opposed to T cells from uninfected animals, cultured in vitro with TGF-beta and anti-CD3/CD28 mAb differentiated into Foxp3(+) and/or IL-10(+) T cells. The IL-10-producing T cells nearly all displayed CD25. Smad7 is a natural inhibitor of TGF-beta signaling. In contrast to gut T cells from uninfected mice, Foxp3(-) IL10(-) CD4(+) T cells from H. polygyrus bakeri- infected mice displayed reduced Smad7 expression and responded to TGF-beta with Smad2/3 phosphorylation. The TGF-beta-induced Tregs that express IL-10 blocked colitis when transferred into the Rag/CD25(-) CD4(+) T cell transfer model of inflammatory bowel disease. TGF-beta had a greatly diminished capacity to induce Tregs in H. polygyrus bakeri-infected transgenic mice with constitutively high T cell-specific Smad7 expression. Thus, infection with H. polygyrus bakeri causes down-modulation in Smad7 expression in intestinal CD4(+) T cells, which allows the TGF-beta produced in response to the infection to induce the Tregs that prevent colitis.
机译:Helminthic感染调节宿主免疫力,可以保护其宿主免于发展炎症性肠病等免疫疾病。调节性T细胞(Tregs)的诱导可能是该保护过程的重要组成部分。 Heligmosomoides Polygerrus Bakeri感染还促进了肠道中的调节细胞因子TGF-β和IL-10的生产。在肠中,TGF-β有助于诱导调节性T细胞。本研究使用Foxp3 / IL-10双重记者小鼠研究TGF-β对结肠和肠系膜淋巴结衍生鼠FoxP3( - )IL-10( - )CD4(+)T细胞分化为其调节的影响表型。来自H. Polygrus Bakeri-Cerved小鼠的FoxP3( - )IL-10( - )CD4(+)T细胞,而不是来自未感染的动物的T细胞,用TGF-β和抗CD3 / CD28 MAb在体外培养Foxp3(+)和/或IL-10(+)T细胞。 IL-10产生T细胞几乎所有显示的CD25。 Smad7是TGF-Beta信号传导的天然抑制剂。与来自未感染的小鼠的肠T细胞相反,来自H.Polyrus贝克感染小鼠的FoxP3( - )IL10( - )CD4(+)T细胞显示出降低的Smad7表达,并与Smad2 / 3磷酸化反应TGF-β。当转移到炎性肠病疾病的RAG / CD25( - )CD4(+)T细胞转移模型中时,TGF-β诱导的Tregs表达IL-10阻断的结肠炎。 TGF-β具有大大减少的能力,诱导H.Polyrus Bakeri感染的转基因小鼠的Tregs,其具有组成型高T细胞特异性Smad7表达。因此,对HP.Polyrus Bakeri的感染导致肠CD4(+)T细胞中Smad7表达中的调节,这允许响应感染产生的TGF-β诱导预防结肠炎的TREG。

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