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本文引用的文献

1
Transcriptional control of invariant NKT cell development.不变自然杀伤 T 细胞发育的转录控制。
Immunol Rev. 2010 Nov;238(1):195-215. doi: 10.1111/j.1600-065X.2010.00962.x.
2
Cutting edge: The transcription factor eomesodermin enables CD8+ T cells to compete for the memory cell niche.前沿:转录因子 eomesodermin 使 CD8+ T 细胞能够竞争记忆细胞龛位。
J Immunol. 2010 Nov 1;185(9):4988-92. doi: 10.4049/jimmunol.1002042. Epub 2010 Oct 8.
3
T cells expressing the transcription factor PLZF regulate the development of memory-like CD8+ T cells.表达转录因子 PLZF 的 T 细胞调节记忆样 CD8+T 细胞的发育。
Nat Immunol. 2010 Aug;11(8):709-16. doi: 10.1038/ni.1898. Epub 2010 Jul 4.
4
New insights into the regulation of T cells by gamma(c) family cytokines.γ(c)家族细胞因子对T细胞调控的新见解。
Nat Rev Immunol. 2009 Jul;9(7):480-90. doi: 10.1038/nri2580.
5
Endogenously produced IL-4 nonredundantly stimulates CD8+ T cell proliferation.内源性产生的白细胞介素-4非冗余性地刺激CD8 + T细胞增殖。
J Immunol. 2009 Feb 1;182(3):1429-38. doi: 10.4049/jimmunol.182.3.1429.
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Structural biology of shared cytokine receptors.共享细胞因子受体的结构生物学
Annu Rev Immunol. 2009;27:29-60. doi: 10.1146/annurev.immunol.24.021605.090616.
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Analyzing real-time PCR data by the comparative C(T) method.通过比较Ct法分析实时荧光定量PCR数据。
Nat Protoc. 2008;3(6):1101-8. doi: 10.1038/nprot.2008.73.
8
IL-4 induces a wide-spectrum intracellular signaling cascade in CD8+ T cells.白细胞介素-4在CD8 + T细胞中诱导广泛的细胞内信号级联反应。
J Leukoc Biol. 2007 Apr;81(4):1102-10. doi: 10.1189/jlb.0906583. Epub 2007 Jan 2.
9
IL-4 receptor expression on CD8+ T cells is required for the development of protective memory responses against liver stages of malaria parasites.CD8+ T细胞上的IL-4受体表达对于针对疟原虫肝期产生保护性记忆反应是必需的。
J Exp Med. 2005 Aug 15;202(4):551-60. doi: 10.1084/jem.20042463. Epub 2005 Aug 8.
10
IL-4Ralpha signaling is important for CD8+ T cell cytotoxicity in the absence of CD4+ T cell help.在缺乏CD4+ T细胞辅助的情况下,IL-4Rα信号传导对CD8+ T细胞的细胞毒性很重要。
Eur J Immunol. 2005 May;35(5):1391-8. doi: 10.1002/eji.200425768.

白细胞介素 4 通过 STAT6 依赖性和非依赖性诱导视黄酸相关孤核受体 γt 和 T 细胞转录因子 2 来作为 CD8+T 细胞中干扰素-γ表达的有效刺激物。

IL-4 acts as a potent stimulator of IFN-γ expression in CD8+ T cells through STAT6-dependent and independent induction of Eomesodermin and T-bet.

机构信息

Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, MI 48109-5620, USA.

出版信息

Cytokine. 2012 Jan;57(1):191-9. doi: 10.1016/j.cyto.2011.10.006. Epub 2011 Nov 9.

DOI:10.1016/j.cyto.2011.10.006
PMID:22078635
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3246089/
Abstract

CD8+ T cell synthesis of IFN-γ is an important component of the CD8+ T cell immune response. In short-term cultures of murine pan-T cells, we found that IL-4 was the principal cytokine responsible for driving IFN-γ synthesis by CD3/CD28-activated CD8+ T cells. IL-4 was able to induce low levels of IFN-γ mRNA in CD8+ T cells even in the absence of CD3/CD28 engagement, although concomitant CD3/CD28 stimulation was necessary for IFN-γ secretion. IL-4 induction of IFN-γ was explained by its ability to induce Eomesodermin and T-bet transcription factors whose expression was further increased by CD3/CD28. Expression of Eomesodermin, T-bet and IFN-γ induced by IL-4 was partially dependent upon activation of MAPK and PI3K but independent of the canonical IL-4-activated transcription factor, STAT6. In contrast, expression of IFN-γ induced by IL-4/CD3/CD28 stimulation showed additional dependency upon STAT6 which functions to increase expression of Eomesodermin specifically. These novel findings point to a function for IL-4 as a direct regulator of IFN-γ expression in CD8+ T cells and reveal the molecular mechanisms involved.

摘要

CD8+ T 细胞合成 IFN-γ 是 CD8+ T 细胞免疫反应的重要组成部分。在鼠源 pan-T 细胞的短期培养中,我们发现 IL-4 是主要的细胞因子,负责驱动 CD3/CD28 激活的 CD8+ T 细胞合成 IFN-γ。即使在缺乏 CD3/CD28 结合的情况下,IL-4 也能够诱导 CD8+ T 细胞中低水平的 IFN-γ mRNA,但同时需要 CD3/CD28 刺激才能分泌 IFN-γ。IL-4 诱导 IFN-γ 的机制是其能够诱导 Eomesodermin 和 T-bet 转录因子的表达,而 CD3/CD28 的结合进一步增加了它们的表达。IL-4 诱导的 Eomesodermin、T-bet 和 IFN-γ 的表达部分依赖于 MAPK 和 PI3K 的激活,但不依赖于经典的 IL-4 激活转录因子 STAT6。相比之下,由 IL-4/CD3/CD28 刺激诱导的 IFN-γ 的表达还依赖于 STAT6,它的功能是特异性地增加 Eomesodermin 的表达。这些新发现表明,IL-4 作为 CD8+ T 细胞中 IFN-γ 表达的直接调节剂具有功能,并揭示了相关的分子机制。