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Transcription Factors and Cis-Acting Elements in T Helper Cell Cytokine Expression

机译:T辅助细胞因子表达中的转录因子和顺式作用元件

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摘要

The immune system provides resistance to the myriad of pathogens in the environment, but can also respond inappropriately causing allergic inflammation and autoimmune disease. CD4+ T cells, which play a crucial role in adaptive immune system, can be divided into several subsets based on their effector functions. T helper 9 (Th9) cells, derived by the IL-4/STAT6 and TGF-beta signaling pathways, produce IL-9 as a hallmark cytokine, as well as IL-10. Through IL-9 production, Th9 cells protect against parasite infection but are also involved in allergic inflammation and autoimmune diseases. Transcription factors that promote Th9 development include STATs, PU.1, BATF, and IRF4. In this study, we identify ETV5 as a factor that promotes IL-9 and IL-10 production by binding to cis-acting regulatory elements in the respective genes. At the Il9 gene, ETV5 cooperates with PU.1 in regulating gene expression. At the Il10 gene, ETV5 facilitates binding of other transcription factors to the locus. These studies and others suggested that there may be additional cis-acting regulatory elements in the Il9 gene. We demonstrate that a conserved noncoding sequence (CNS) located 25 kb upstream of the Il9 transcription start site, termed Il9 CNS-25, is critical for regulating Il9 expression in Th cell subsets. Th9 cells derived from Il9 CNS-25 mutant (Il9 DeltaCNS-25) mice produce significantly less IL-9. Il9 CNS-25 promoted chromatin modifications at the promoter and accessibility of the locus. Il9 DeltaCNS-25 mice showed attenuated airway inflammation compared to control mice. The Il9 CNS-25 region in mice is conserved with an IL9 CNS-18 region in the human genome. We deleted CNS-18 in primary human Th9 cells and observed diminished IL-9 production. Thus, we have identified transcription factors that regulate multiple cytokines in Th cell lineages and have demonstrated that the Il9 CNS-25/IL9 CNS-18 elements are respectively critical for Il9/IL9 gene expression.
机译:免疫系统对环境中的多种病原体具有抵抗力,但也可能做出不适当的反应,导致过敏性炎症和自身免疫性疾病。在适应性免疫系统中起关键作用的CD4 + T细胞可根据其效应子功能分为几个亚组。通过IL-4 / STAT6和TGF-beta信号通路衍生的T辅助9(Th9)细胞产生IL-9作为标志性细胞因子,并产生IL-10。通过产生IL-9,Th9细胞可预防寄生虫感染,但也参与过敏性炎症和自身免疫性疾病。促进Th9发育的转录因子包括STAT,PU.1,BATF和IRF4。在这项研究中,我们确定ETV5是通过与各个基因中的顺式作用调节元件结合而促进IL-9和IL-10产生的因子。在Il9基因上,ETV5与PU.1协同调节基因表达。在Il10基因上,ETV5促进其他转录因子与基因座的结合。这些研究和其他研究表明,Il9基因中可能还有其他顺式作用调控元件。我们证明,位于称为Il9 CNS-25的Il9转录起始位点上游25 kb的保守非编码序列(CNS)对于调节Th细胞亚群中的Il9表达至关重要。源自Il9 CNS-25突变体(Il9 DeltaCNS-25)小鼠的Th9细胞产生的IL-9明显减少。 Il9 CNS-25在启动子和基因座可及性上促进了染色质修饰。与对照小鼠相比,Il9 DeltaCNS-25小鼠表现出气道炎症减弱。小鼠中的Il9 CNS-25区与人类基因组中的IL9 CNS-18区保守。我们在原代人Th9细胞中删除了CNS-18,并观察到IL-9产生减少。因此,我们已经确定了调节Th细胞谱系中多种细胞因子的转录因子,并证明了Il9 CNS-25 / IL9 CNS-18元件分别对Il9 / IL9基因表达至关重要。

著录项

  • 作者

    Koh, Byunghee.;

  • 作者单位

    Indiana University - Purdue University Indianapolis.;

  • 授予单位 Indiana University - Purdue University Indianapolis.;
  • 学科 Immunology.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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