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Lipid A Structural Modifications in Extreme Conditions and Identification of Unique Modifying Enzymes to Define the Toll-like Receptor 4 Structure-Activity Relationship

机译:在极端条件下的脂质A结构修饰和独特的修饰酶的鉴定以定义Toll样受体4结构-活性关系。

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摘要

Strategies utilizing Toll-like receptor 4 (TLR4) agonists for treatment of cancer, infectious diseases, and other targets report promising results. Potent TLR4 antagonists are also gaining attention as therapeutic leads. Though some principles for TLR4 modulation by lipid A have been described, a thorough understanding of the structure-activity relationship (SAR) is lacking. Only through a complete definition of lipid A-TLR4 SAR is it possible to predict TLR4 signaling effects of discrete lipid A structures, rendering them more pharmacologically relevant. A limited ‘toolbox’ of lipid A-modifying enzymes has been defined and is largely composed of enzymes from mesophile human and zoonotic pathogens. Expansion of this ‘toolbox’ will result from extending the search into lipid A biosynthesis and modification by bacteria living at the extremes. Here, we review the fundamentals of lipid A structure, advances in lipid A uses in TLR4 modulation, and the search for novel lipid A-modifying systems in extremophile bacteria.
机译:利用Toll样受体4(TLR4)激动剂治疗癌症,传染病和其他靶标的策略报道了可喜的结果。强大的TLR4拮抗剂作为治疗药物也引起了人们的注意。尽管已描述了通过脂质A调节TLR4的一些原理,但仍缺乏对结构活性关系(SAR)的透彻了解。只有通过对脂质A-TLR4 SAR的完整定义,才可能预测离散脂质A结构的TLR4信号传导作用,使其在药理学上更相关。已经定义了有限的脂质A修饰酶“工具箱”,其主要由中温人类和人畜共患病原体的酶组成。该“工具箱”的扩展将源于对脂类A生物合成和极端细菌的修饰的广泛搜索。在这里,我们回顾了脂质A结构的基础知识,脂质A在TLR4调控中的应用进展以及在极端嗜热菌中寻找新型脂质A修饰系统的研究。

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