首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Cutting edge: Smad2 and Smad4 regulate TGF-β-mediated Il9 gene expression via EZH2 displacement
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Cutting edge: Smad2 and Smad4 regulate TGF-β-mediated Il9 gene expression via EZH2 displacement

机译:前沿:Smad2和Smad4通过EZH2置换调节TGF-β介导的Il9基因表达

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摘要

IL-9 is a proallergic cytokine produced by a newly proposed Th cell subset, Th9. Th9 cells can be generated by treatment of naive T cells with TGF-b and IL-4 in vitro. However, it is still not clear how TGF-b signaling regulates Th9 differentiation. In this study, we demonstrate that Smad2 and Smad4, two transcriptional factors activated by TGF-b signaling, are required for Th9 differentiation in vitro. Deficiency of Smad2 or Smad4 in T cells resulted in impaired IL-9 expression, which was coincident with enrichment of repressive chromatin modification histone H3 K27 trimethylation and enhanced EZH2 binding to the Il9 locus. Pharmacologic inhibition of EZH2 partially rescued IL-9 production in Smad-deficient Th9 cells. Smad proteins may displace EZH2 directly from the Il9 locus, because Smad2 and Smad4 can bind EZH2. Our data shed light on the molecular mechanisms underlying Th9 cell differentiation, revealing that the TGF-b-Smad2/4-signaling pathway regulates IL-9 production through an epigenetic mechanism.
机译:IL-9是由新提出的Th细胞亚群Th9产生的变应原性细胞因子。 Th9细胞可以通过在体外用TGF-b和IL-4处理幼稚T细胞而产生。然而,尚不清楚TGF-b信号传导如何调节Th9分化。在这项研究中,我们证明了Smad2和Smad4,这两个由TGF-b信号激活的转录因子,是Th9体外分化所必需的。 T细胞中Smad2或Smad4的缺乏导致IL-9表达受损,这与抑制性染色质修饰组蛋白H3 K27三甲基化的富集和增强的EZH2与Il9基因座的结合相吻合。 EZH2的药理抑制作用部分挽救了Smad缺陷Th9细胞中IL-9的产生。 Smad蛋白可能直接从Il9基因座取代EZH2,因为Smad2和Smad4可以结合EZH2。我们的数据揭示了Th9细胞分化的潜在分子机制,揭示了TGF-b-Smad2 / 4-信号通路通过表观遗传机制调节IL-9的产生。

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