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首页> 外文期刊>The journal of immunology >Th22 Cells Form a Distinct Th Lineage from Th17 Cells In Vitro with Unique Transcriptional Properties and Tbet-Dependent Th1 Plasticity
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Th22 Cells Form a Distinct Th Lineage from Th17 Cells In Vitro with Unique Transcriptional Properties and Tbet-Dependent Th1 Plasticity

机译:Th22细胞与Th17细胞在体外形成独特的Th谱系,具有独特的转录特性和Tbet依赖的Th1可塑性

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Th22 cells are a major source of IL-22 and have been found at sites of infection and in a range of inflammatory diseases. However, their molecular characteristics and functional roles remain largely unknown because of our inability to generate and isolate pure populations. We developed a novel Th22 differentiation assay and generated dual IL-22/IL-17A reporter mice to isolate and compare pure populations of cultured Th22 and Th17 cells. Il17a fate-mapping and transcriptional profiling provide evidence that these Th22 cells have never expressed IL-17A, suggesting that they are potentially a distinct cell lineage from Th17 cells under in vitro culture conditions. Interestingly, Th22 cells also expressed granzymes, IL-13, and increased levels of Tbet. Using transcription factor–deficient cells, we demonstrate that RORγt and Tbet act as positive and negative regulators of Th22 differentiation, respectively. Furthermore, under Th1 culture conditions in vitro, as well as in an IFN-γ–rich inflammatory environment in vivo, Th22 cells displayed marked plasticity toward IFN-γ production. Th22 cells also displayed plasticity under Th2 conditions in vitro by upregulating IL-13 expression. Our work has identified conditions to generate and characterize Th22 cells in vitro. Further, it provides evidence that Th22 cells develop independently of the Th17 lineage, while demonstrating plasticity toward both Th1- and Th2-type cells. This article is featured in In This Issue , p.[1763][1] [1]: /lookup/volpage/198/1763
机译:Th22细胞是IL-22的主要来源,并已在感染部位和多种炎症疾病中发现。然而,由于我们无法产生和分离纯种群,它们的分子特性和功能作用仍然很大程度上未知。我们开发了一种新型的Th22分化测定法,并生成了双重IL-22 / IL-17A报告基因小鼠,以分离和比较培养的Th22和Th17细胞的纯种群。 Il17a的命运图谱和转录图谱提供了这些Th22细胞从未表达过IL-17A的证据,表明它们在体外培养条件下可能是与Th17细胞不同的细胞谱系。有趣的是,Th22细胞还表达了颗粒酶,IL-13和升高的Tbet水平。使用缺乏转录因子的细胞,我们证明RORγt和Tbet分别充当Th22分化的正调节剂和负调节剂。此外,在体外Th1培养条件下以及在体内富含IFN-γ的炎性环境中,Th22细胞对IFN-γ的产生具有可塑性。 Th22细胞在体外Th2条件下还通过上调IL-13表达而显示出可塑性。我们的工作已经确定了在体外产生和表征Th22细胞的条件。此外,它提供了证据,表明Th22细胞独立于Th17谱系发育,同时展示了对Th1型和Th2型细胞的可塑性。本文在“本期”中,第[1763] [1]页中有介绍。 [1]:/ lookup / volpage / 198/1763

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