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A Computational Probe into the Structure and Dynamics of the Full-Length Toll-Like Receptor 3 in a Phospholipid Bilayer

机译:磷脂双层中全长收费像受体3的结构和动力学的计算探讨。

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摘要

Toll-like receptor 3 (TLR3) provides the host with antiviral defense by initiating an immune signaling cascade for the production of type I interferons. The X-ray structures of isolated TLR3 ectodomain (ECD) and transmembrane (TM) domains have been reported; however, the structure of a membrane-solvated, full-length receptor remains elusive. We investigated an all-residue TLR3 model embedded inside a phospholipid bilayer using molecular dynamics simulations. The TLR3-ECD exhibited a ~30°–35° tilt on the membrane due to the electrostatic interaction between the N-terminal subdomain and phospholipid headgroups. Although the movement of dsRNA did not affect the dimer integrity of TLR3, its sugar-phosphate backbone was slightly distorted with the orientation of the ECD. TM helices exhibited a noticeable tilt and curvature but maintained a consistent crossing angle, avoiding the hydrophobic mismatch with the bilayer. Residues from the αD helix and the CD and DE loops of the Toll/interleukin-1 receptor (TIR) domains were partially absorbed into the lower leaflet of the bilayer. We found that the previously unknown TLR3-TIR dimerization interface could be stabilized by the reciprocal contact between αC and αD helices of one subunit and the αC helix and the BB loop of the other. Overall, the present study can be helpful to understand the signaling-competent form of TLR3 in physiological environments.
机译:Toll样受体3(TLR3)通过启动产生I型干扰素的免疫信号级联反应为宿主提供抗病毒防御能力。已经报道了分离的TLR3胞外域(ECD)和跨膜(TM)域的X射线结构;然而,膜溶解的全长受体的结构仍然难以捉摸。我们使用分子动力学模拟研究了嵌入磷脂双层中的全残基TLR3模型。由于N末端亚结构域和磷脂头基之间的静电相互作用,TLR3-ECD在膜上呈现约30°–35°的倾斜度。尽管dsRNA的移动不影响TLR3的二聚体完整性,但其糖-磷酸主链随ECD的方向而略微变形。 TM螺旋表现出明显的倾斜度和曲率,但保持一致的交叉角,避免了与双层的疏水失配。来自Toll / interleukin-1受体(TIR)域的αD螺旋以及CD和DE环的残基被部分吸收到双层的下部小叶中。我们发现,一个亚基的αC和αD螺旋与另一亚基的αC螺旋和BB环之间的相互接触可以稳定以前未知的TLR3-TIR二聚界面。总体而言,本研究有助于理解生理环境中TLR3的信号传递形式。

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