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TAM receptors are pleiotropic inhibitors of the innate immune response

机译:TAM受体是天然免疫反应的多效抑制剂

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The activation of Toll-like receptors (TLRs) in dendritic cells (DCs) triggers a rapid inflammatory response to pathogens. However, this response must be tightly regulated because unrestrained TLR signaling generates a chronic inflammatory milieu that often leads to autoimmunity. We have found that the TAM receptor tyrosine kinases-Tyro3, Axl, and Mer- broadly inhibit both TLR and TLR-induced cytokine-receptor cascades. Remarkably, TAM inhibition of inflammation is transduced through an essential stimulator of inflammation - the type I interferon receptor (IFNAR) - and its associated transcription factor STAT1. TLR induction of IFNAR-STAT1 signaling upregulates the TAM system, which in turn usurps the IFNAR-STAT1 cassette to induce the cytokine and TLR suppressors SOCS1 and SOCS3. These results illuminate a self-regulating cycle of inflammation, in which the obligatory, cytokine-dependent activation of TAM signaling hijacks a proinflammatory pathway to provide an intrinsic feedback inhibitor of both TLR- and cytokine-driven immune responses.
机译:树突状细胞(DCs)中Toll样受体(TLR)的激活引发对病原体的快速炎症反应。但是,必须严格调节这种反应,因为不受约束的TLR信号传导会产生慢性炎症环境,从而经常导致自身免疫。我们已经发现,TAM受体酪氨酸激酶-Tyro3,Axl和Mer-广泛抑制TLR和TLR诱导的细胞因子受体级联反应。值得注意的是,TAM对炎症的抑制作用是通过基本的炎症刺激物-I型干扰素受体(IFNAR)及其相关的转录因子STAT1进行的。 TLR对IFNAR-STAT1信号的诱导会上调TAM系统,继而篡改IFNAR-STAT1盒以诱导细胞因子和TLR抑制因子SOCS1和SOCS3。这些结果阐明了炎症的自我调节周期,其中TAM信号的强制性,依赖细胞因子的激活劫持了促炎途径,从而提供了TLR和细胞因子驱动的免疫应答的内在反馈抑制剂。

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