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Identification of binding sites for myeloid differentiation primary response gene 88 (MyD88) and Toll-like receptor 4 in MyD88 adapter-like (Mal)

机译:在myD88衔接子样(mal)中鉴定骨髓分化初级应答基因88(myD88)和Toll样受体4的结合位点

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摘要

Upon activation, Toll-like receptor 4 (TLR4) binds adapter proteins, including MyD88 (myeloid differentiation primary response gene 88) and Mal (MyD88 adapter-like) for its signal transduction. TLR4 and the adapter proteins each contain a Toll/Il-1 receptor domain (TIR domain). In this study we used random mutagenesis and the mammalian two-hybrid method MAPPIT (mammalian protein-protein interaction trap) to identify mutations in Mal that disrupt its interaction with TLR4 and/or MyD88. Our study shows that four potential binding sites and the AB-loop in the Mal TIR domain all contribute to formation of the TLR4-Mal-MyD88 complex. Mutations in the symmetrical back-to-back Mal homodimer interface affect Mal homodimerization and interaction with MyD88 and TLR4. Our data suggest that Mal dimerization may lead to formation of potential binding platforms on the top and the side of the Mal dimer that bind MyD88 or TLR4. Mutations that affect the interaction of Mal with MyD88 also affect NF-kappa B activation induced by Mal overexpression. In MAPPIT, co-expression of the MyD88 TIR domain enhances Mal dimerization and Mal binding to TLR4. Similarly, co-expression of Mal and the MyD88 TIR domain strongly promotes dimerization of the TLR4 intracellular domain in MAPPIT. The different types of TIR-TIR interactions in the TLR4-Mal-MyD88 complex thus show cooperative binding in MAPPIT. We present plausible models for the TIR-TIR interactions in the TLR4-Mal-MyD88 complex.
机译:激活后,Toll样受体4(TLR4)结合衔接子蛋白,包括MyD88(髓样分化初级反应基因88)和Mal(衔接MyD88衔接子样)以进行信号转导。 TLR4和衔接蛋白各自包含一个Toll / Il-1受体域(TIR域)。在这项研究中,我们使用了随机诱变和哺乳动物两杂交法MAPPIT(哺乳动物蛋白质-蛋白质相互作用陷阱)来鉴定Mal中破坏其与TLR4和/或MyD88相互作用的突变。我们的研究表明,Mal TIR域中的四个潜在结合位点和AB环均有助于TLR4-Mal-MyD88复合物的形成。对称的背对背Mal同源二聚体界面中的突变会影响Mal同源二聚化以及与MyD88和TLR4的相互作用。我们的数据表明,Mal二聚化可能导致在与MyD88或TLR4结合的Mal二聚体的顶部和侧面形成潜在的结合平台。影响Mal与MyD88相互作用的突变也影响Mal过表达诱导的NF-κB活化。在MAPPIT中,MyD88 TIR域的共表达可增强Mal二聚化和Mal与TLR4的结合。同样,Mal和MyD88 TIR结构域的共表达强烈促进MAPPIT中TLR4细胞内结构域的二聚化。因此,TLR4-Mal-MyD88复合体中不同类型的TIR-TIR相互作用显示出MAPPIT中的协同结合。我们为TLR4-Mal-MyD88复合体中的TIR-TIR相互作用提供了可行的模型。

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