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Spatial structure of TLR4 transmembrane domain in bicelles provides the insight into the receptor activation mechanism

机译:Bicells中TLR4跨膜结构域的空间结构提供了对受体激活机制的了解

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摘要

Toll-like receptors (TLRs) play a key role in the innate and adaptive immune systems. While a lot of structural data is available for the extracellular and cytoplasmic domains of TLRs, and a model of the dimeric full-length TLR3 receptor in the active state was build, the conformation of the transmembrane (TM) domain and juxtamembrane regions in TLR dimers is still unclear. In the present work, we study the transmembrane and juxtamembrane parts of human TLR4 receptor using solution NMR spectroscopy in a variety of membrane mimetics, including phospholipid bicelles. We show that the juxtamembrane hydrophobic region of TLR4 includes a part of long TM α-helix. We report the dimerization interface of the TM domain and claim that long TM domains with transmembrane charged aminoacids is a common feature of human toll-like receptors. This fact is analyzed from the viewpoint of protein activation mechanism, and a model of full-length TLR4 receptor in the dimeric state has been proposed.
机译:Toll样受体(TLR)在先天和适应性免疫系统中起关键作用。尽管有大量结构数据可用于TLR的胞外域和胞质域,并且建立了处于活跃状态的二聚体全长TLR3受体模型,但TLR二聚体中的跨膜(TM)域和近膜区域的构象仍不清楚。在目前的工作中,我们使用溶液NMR光谱技术在包括磷脂双细胞在内的多种膜模拟物中研究人TLR4受体的跨膜和近膜部分。我们显示TLR4的近膜疏水区包括长TMα-螺旋的一部分。我们报告了TM域的二聚化界面,并声称带有跨膜带电氨基酸的长TM域是人类通行费样受体的共同特征。从蛋白质激活机制的角度分析了这一事实,并提出了处于二聚状态的全长TLR4受体模型。

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