首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Poxviral Protein A46 Antagonizes Toll-like Receptor 4 Signaling by Targeting BB Loop Motifs in Toll-IL-1 Receptor Adaptor Proteins to Disrupt Receptor:Adaptor Interactions
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Poxviral Protein A46 Antagonizes Toll-like Receptor 4 Signaling by Targeting BB Loop Motifs in Toll-IL-1 Receptor Adaptor Proteins to Disrupt Receptor:Adaptor Interactions

机译:痘病毒蛋白A46通过靶向Toll-IL-1受体衔接子蛋白中的BB环母体来破坏Toll样受体4信号来破坏受体:衔接子相互作用

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摘要

Toll-like receptors (TLRs) have an anti-viral role in that they detect viruses, leading to cytokine and IFN induction, and as such are targeted by viruses for immune evasion. TLR4, although best known for its role in recognizing bacterial LPS, is also strongly implicated in the immune response to viruses. We previously showed that the poxviral protein A46 inhibits TLR4 signaling and interacts with Toll-IL-1 receptor (TIR) domain-containing proteins of the receptor complex. However the exact molecular mechanism whereby A46 disrupts TLR4 signaling remains to be established, and may yield insight into how the TLR4 complex functions, since viruses often optimally target key residues and motifs on host proteins for maximal efficiency. Here we show that A46 targets the BB loop motif of TIR proteins and thereby disrupts receptor:adaptor (TLR4:Mal and TLR4:TRAM), but not receptor:receptor (TLR4:TLR4) nor adaptor:adaptor (Mal:MyD88, TRAM:TRIF, and Mal:Mal) TIR interactions. The requirement for an intact BB loop for TIR adaptor interactions correlated with the protein:protein interfaces antagonized by A46. We previously discovered a peptide fragment derived from A46 termed VIPER (Viral Inhibitory Peptide of TLR4), which specifically inhibits TLR4 responses. Here we demonstrate that the region of A46 from which VIPER is derived represents the TLR4-specific inhibitory motif of the intact protein, and is essential for A46:TRAM interactions. This study provides the molecular basis for pathogen subversion of TLR4 signaling and clarifies the importance of TIR motif BB loops, which have been selected for viral antagonism, in the formation of the TLR4 complex.
机译:Toll样受体(TLR)具有抗病毒作用,因为它们可以检测病毒,导致细胞因子和IFN的诱导,因此被病毒靶向以逃避免疫。 TLR4尽管以其在识别细菌LPS中的作用而广为人知,但也与病毒的免疫反应密切相关。我们以前显示痘病毒蛋白A46抑制TLR4信号传导,并与受体复合物的包含Toll-IL-1受体(TIR)域的蛋白相互作用。但是,A46破坏TLR4信号传导的确切分子机制尚待建立,并且可能会深入了解TLR4复合物的功能,因为病毒通常以最佳效率靶向宿主蛋白上的关键残基和基序以实现最大效率。在这里,我们显示A46靶向TIR蛋白的BB环基序,从而破坏受体:适配器(TLR4:Mal和TLR4:TRAM),但不破坏受体:受体(TLR4:TLR4)或适配器:适配器(Mal:MyD88,TRAM: TRIF和Mal:Mal)TIR交互。 TIR接头相互作用需要完整的BB环与A46拮抗的蛋白质:蛋白质界面相关。我们先前发现了一种源自A46的称为VIPER(TLR4的病毒抑制肽)的肽片段,该片段特异性抑制TLR4应答。在这里,我们证明VIPER来源的A46区域代表完整蛋白的TLR4特异性抑制基序,并且对于A46:TRAM相互作用至关重要。这项研究为TLR4信号的病原体颠覆提供了分子基础,并阐明了已被选择用于病毒拮抗作用的TIR基序BB环在TLR4复合物形成中的重要性。

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