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Cryo-EM structures of Toll-like receptors in complex with UNC93B1.Toll 样受体与 UNC93B1 复合物的冷冻电镜结构
Nat Struct Mol Biol. 2021 Feb;28(2):173-180. doi: 10.1038/s41594-020-00542-w. Epub 2021 Jan 11.
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Structural analysis reveals TLR7 dynamics underlying antagonism.结构分析揭示了 TLR7 拮抗作用的动力学机制。
Nat Commun. 2020 Oct 15;11(1):5204. doi: 10.1038/s41467-020-19025-z.
3
Discovery of Potent and Orally Bioavailable Small Molecule Antagonists of Toll-like Receptors 7/8/9 (TLR7/8/9).Toll样受体7/8/9(TLR7/8/9)强效且口服生物可利用的小分子拮抗剂的发现。
ACS Med Chem Lett. 2020 Jul 29;11(9):1751-1758. doi: 10.1021/acsmedchemlett.0c00264. eCollection 2020 Sep 10.
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Target-Based Identification and Optimization of 5-Indazol-5-yl Pyridones as Toll-like Receptor 7 and 8 Antagonists Using a Biochemical TLR8 Antagonist Competition Assay.基于靶点的鉴定和优化 5-吲唑-5-基吡啶酮类 Toll 样受体 7 和 8 拮抗剂:采用生化 TLR8 拮抗剂竞争测定法。
J Med Chem. 2020 Aug 13;63(15):8276-8295. doi: 10.1021/acs.jmedchem.0c00130. Epub 2020 Jul 30.
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TASL is the SLC15A4-associated adaptor for IRF5 activation by TLR7-9.TASL 是 TLR7-9 激活 IRF5 所必需的 SLC15A4 相关衔接子。
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Rationally Designed Small-Molecule Inhibitors Targeting an Unconventional Pocket on the TLR8 Protein-Protein Interface.靶向 TLR8 蛋白-蛋白相互作用界面非传统口袋的理性设计小分子抑制剂。
J Med Chem. 2020 Apr 23;63(8):4117-4132. doi: 10.1021/acs.jmedchem.9b02128. Epub 2020 Apr 13.
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MyD88 Death-Domain Oligomerization Determines Myddosome Architecture: Implications for Toll-like Receptor Signaling.MyD88 死亡结构域寡聚化决定了 Myddosome 结构:对 Toll 样受体信号转导的影响。
Structure. 2020 Mar 3;28(3):281-289.e3. doi: 10.1016/j.str.2020.01.003. Epub 2020 Jan 28.
8
Release from UNC93B1 reinforces the compartmentalized activation of select TLRs.UNC93B1 的释放增强了特定 TLR 的区室化激活。
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9
UNC93B1 recruits syntenin-1 to dampen TLR7 signalling and prevent autoimmunity.UNC93B1 招募 syntenin-1 来抑制 TLR7 信号转导并预防自身免疫。
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10
Structural Basis of TLR2/TLR1 Activation by the Synthetic Agonist Diprovocim.二酰基肼类化合物 Diprovocim 激活 TLR2/TLR1 的结构基础
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toll 样受体的结构与功能研究

Structural and functional understanding of the toll-like receptors.

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo, Japan.

出版信息

Protein Sci. 2021 Apr;30(4):761-772. doi: 10.1002/pro.4043. Epub 2021 Feb 24.

DOI:10.1002/pro.4043
PMID:33576548
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7980524/
Abstract

Recognition of invading pathogens by the innate immune system is essential to initiate antimicrobial responses and trigger adaptive immunity. This is largely mediated by an array of pattern-recognition receptor families that are essential for recognizing conserved molecular motifs characteristic of pathogenic microbes. One such family is the Toll-like receptors (TLRs). Activation of TLRs induces production of pro-inflammatory cytokines and type I interferons: the former triggers the synthesis of inflammatory mediators which cause fever, pain and other inflammation, and the latter mediates antiviral responses. Over the past decade, significant progress has been made in structural elucidation of TLRs in higher eukaryotes. The TLR structures with and without agonist and antagonist have been revealed by X-ray crystallography and cryo-electron microscopy studies, demonstrating the activated dimer formation induced by the agonistic ligand and the inhibition mechanism of the antagonistic ligand. Intracellular assembled structures and the TLR-chaperone complex are also reported. As the structural understanding of TLRs becomes better integrated with biochemical and immunological studies, a more comprehensive picture of their architectural and functional properties will emerge. This review summarizes recent advances in structural biological and mechanistic studies on TLRs.

摘要

先天免疫系统识别入侵病原体对于启动抗菌反应和触发适应性免疫至关重要。这主要是通过一系列模式识别受体家族介导的,这些家族对于识别致病微生物特征性的保守分子模体至关重要。其中一个家族是 Toll 样受体(TLR)。TLR 的激活诱导促炎细胞因子和 I 型干扰素的产生:前者触发炎症介质的合成,导致发热、疼痛和其他炎症,后者介导抗病毒反应。在过去的十年中,在高等真核生物中 TLR 的结构阐明方面取得了重大进展。X 射线晶体学和冷冻电镜研究揭示了具有和不具有激动剂和拮抗剂的 TLR 结构,展示了激动剂配体诱导的激活二聚体形成和拮抗剂配体的抑制机制。还报道了细胞内组装结构和 TLR 伴侣复合物。随着对 TLR 的结构理解与生化和免疫学研究更好地结合,它们的结构和功能特性将更加全面。本文综述了 TLR 结构生物学和机制研究的最新进展。