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Toll 样受体配体识别结构域的综合建模与功能分析。

Comprehensive modeling and functional analysis of Toll-like receptor ligand-recognition domains.

机构信息

Toll-Like Receptors and Cancer, German Cancer Research Center (DKFZ), 69120 Heidelberg, Germany.

出版信息

Protein Sci. 2010 Mar;19(3):558-69. doi: 10.1002/pro.333.

Abstract

Toll-like receptors (TLRs) are innate immune pattern-recognition receptors endowed with the capacity to detect microbial pathogens based on pathogen-associated molecular patterns. The understanding of the molecular principles of ligand recognition by TLRs has been greatly accelerated by recent structural information, in particular the crystal structures of leucine-rich repeat-containing ectodomains of TLR2, 3, and 4 in complex with their cognate ligands. Unfortunately, for other family members such as TLR7, 8, and 9, no experimental structural information is currently available. Methods such as X-ray crystallography or nuclear magnetic resonance are not applicable to all proteins. Homology modeling in combination with molecular dynamics may provide a straightforward yet powerful alternative to obtain structural information in the absence of experimental (structural) data, provided that the generated three-dimensional models adequately approximate what is found in nature. Here, we report the development of modeling procedures tailored to the structural analysis of the extracellular domains of TLRs. We comprehensively compared secondary structure, torsion angles, accessibility for glycosylation, surface charge, and solvent accessibility between published crystal structures and independently built TLR2, 3, and 4 homology models. Finding that models and crystal structures were in good agreement, we extended our modeling approach to the remaining members of the TLR family from human and mouse, including TLR7, 8, and 9.

摘要

Toll 样受体(TLRs)是先天免疫模式识别受体,能够基于病原体相关分子模式识别微生物病原体。最近的结构信息,特别是 TLR2、3 和 4 的富含亮氨酸重复的胞外结构域与它们的同源配体复合物的晶体结构,极大地加速了对配体识别的分子原理的理解。不幸的是,对于其他家族成员,如 TLR7、8 和 9,目前没有实验结构信息。X 射线晶体学或核磁共振等方法并不适用于所有蛋白质。同源建模结合分子动力学可能是在缺乏实验(结构)数据的情况下获取结构信息的直接而强大的替代方法,前提是生成的三维模型能够充分接近自然界中的实际结构。在这里,我们报告了针对 TLR 细胞外结构域的结构分析定制建模程序的开发。我们全面比较了已发表的晶体结构和独立构建的 TLR2、3 和 4 同源模型之间的二级结构、扭转角、糖基化的可及性、表面电荷和溶剂可及性。发现模型和晶体结构非常吻合,我们将我们的建模方法扩展到了来自人和小鼠的 TLR 家族的其余成员,包括 TLR7、8 和 9。

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