首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Interleukin-1 receptor–associated kinase 4 (IRAK4) plays a dual role in myddosome formation and Toll-like receptor signaling
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Interleukin-1 receptor–associated kinase 4 (IRAK4) plays a dual role in myddosome formation and Toll-like receptor signaling

机译:白细胞介素1受体相关激酶4(IRAK4)在髓核形成和Toll样受体信号传导中起双重作用

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摘要

Toll-like receptors (TLRs) form part of the host innate immune system, in which they act as sensors of microbial and endogenous danger signals. Upon TLR activation, the intracellular Toll/interleukin-1 receptor domains of TLR dimers initiate oligomerization of a multiprotein signaling platform comprising myeloid differentiation primary response 88 (MyD88) and members of the interleukin-1 receptor–associated kinase (IRAK) family. Formation of this myddosome complex initiates signal transduction pathways, leading to the activation of transcription factors and the production of inflammatory cytokines. To date, little is known about the assembly and disassembly of the myddosome and about the mechanisms by which these complexes mediate multiple downstream signaling pathways. Here, we isolated myddosome complexes from whole-cell lysates of TLR-activated primary mouse macrophages and from IRAK reporter macrophages to examine the kinetics of myddosome assembly and disassembly. Using a selective inhibitor of IRAK4's kinase activity, we found that whereas TLR cytokine responses were ablated, myddosome formation was stabilized in the absence of IRAK4's kinase activity. Of note, IRAK4 inhibition had only a minimal effect on NF-κB and mitogen-activated protein kinase (MAPK) signaling. In summary, our results indicate that IRAK4 has a critical scaffold function in myddosome formation and that its kinase activity is dispensable for myddosome assembly and activation of the NF-κB and MAPK pathways but is essential for MyD88-dependent production of inflammatory cytokines. Our findings suggest that the scaffold function of IRAK4 may be an attractive target for treating inflammatory and autoimmune diseases.
机译:Toll样受体(TLR)构成宿主先天免疫系统的一部分,在其中它们充当微生物和内源性危险信号的传感器。 TLR激活后,TLR二聚体的细胞内Toll / interleukin-1受体域启动了一个多蛋白信号平台的寡聚化,该平台包括髓样分化初级反应88(MyD88)和白介素1受体相关激酶(IRAK)家族的成员。这种myddosome复合物的形成启动了信号转导途径,导致转录因子的激活和炎性细胞因子的产生。迄今为止,关于髓核小体的组装和拆卸以及这些复合物介导多个下游信号传导途径的机制知之甚少。在这里,我们从TLR激活的原代小鼠巨噬细胞的全细胞裂解物中和IRAK记者巨噬细胞中分离了Myddosome复合物,以检查Myddosome组装和拆卸的动力学。使用IRAK4激酶活性的选择性抑制剂,我们发现虽然TLR细胞因子反应被消除,但在不存在IRAK4激酶活性的情况下,髓鞘形成得以稳定。值得注意的是,IRAK4抑制对NF-κB和有丝分裂原激活的蛋白激酶(MAPK)信号传导的影响很小。总而言之,我们的结果表明IRAK4在myddosome的形成中具有关键的支架功能,其激酶活性对于myddosome的组装以及NF-κB和MAPK途径的激活是必不可少的,但对于MyD88依赖性的炎性细胞因子的产生是必不可少的。我们的发现表明,IRAK4的支架功能可能是治疗炎症和自身免疫性疾病的诱人靶标。

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