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巨噬细胞受体Mincle扩展碳水化合物识别结构域上糖脂配体的酰化海藻糖类似物的结合位点

Binding Sites for Acylated Trehalose Analogs of Glycolipid Ligands on an Extended Carbohydrate Recognition Domain of the Macrophage Receptor Mincle.

作者信息

Feinberg Hadar, Rambaruth Neela D S, Jégouzo Sabine A F, Jacobsen Kristian M, Djurhuus Rasmus, Poulsen Thomas B, Weis William I, Taylor Maureen E, Drickamer Kurt

机构信息

From the Departments of Structural Biology and Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, California 94305.

the Department of Life Sciences, Imperial College, London SW7 2AZ, United Kingdom, and.

出版信息

J Biol Chem. 2016 Sep 30;291(40):21222-21233. doi: 10.1074/jbc.M116.749515. Epub 2016 Aug 19.

Abstract

The macrophage receptor mincle binds to trehalose dimycolate on the surface of Mycobacterium tuberculosis Signaling initiated by this interaction leads to cytokine production, which underlies the ability of mycobacteria to evade the immune system and also to function as adjuvants. In previous work the mechanism for binding of the sugar headgroup of trehalose dimycolate to mincle has been elucidated, but the basis for enhanced binding to glycolipid ligands, in which hydrophobic substituents are attached to the 6-hydroxyl groups, has been the subject of speculation. In the work reported here, the interaction of trehalose derivatives with bovine mincle has been probed with a series of synthetic mimics of trehalose dimycolate in binding assays, in structural studies by x-ray crystallography, and by site-directed mutagenesis. Binding studies reveal that, rather than reflecting specific structural preference, the apparent affinity of mincle for ligands with hydrophobic substituents correlates with their overall size. Structural and mutagenesis analysis provides evidence for interaction of the hydrophobic substituents with multiple different portions of the surface of mincle and confirms the presence of three Ca-binding sites. The structure of an extended portion of the extracellular domain of mincle, beyond the minimal C-type carbohydrate recognition domain, also constrains the way the binding domains may interact on the surface of macrophages.

摘要

巨噬细胞受体小甘露糖结合凝集素(Mincle)与结核分枝杆菌表面的海藻糖二霉菌酸酯结合。这种相互作用引发的信号传导会导致细胞因子的产生,这是分枝杆菌逃避免疫系统以及发挥佐剂作用的基础。在之前的工作中,已经阐明了海藻糖二霉菌酸酯的糖头部与Mincle结合的机制,但对于与糖脂配体增强结合的基础,即疏水取代基连接到6-羟基上的情况,一直存在猜测。在本文报道的工作中,通过结合实验、X射线晶体学结构研究以及定点诱变,用一系列海藻糖二霉菌酸酯的合成模拟物探究了海藻糖衍生物与牛Mincle的相互作用。结合研究表明,Mincle对具有疏水取代基的配体的表观亲和力与其总体大小相关,而不是反映特定的结构偏好。结构和诱变分析提供了疏水取代基与Mincle表面多个不同部分相互作用的证据,并证实了三个钙结合位点的存在。Mincle细胞外结构域超出最小C型碳水化合物识别结构域的延伸部分的结构,也限制了结合结构域在巨噬细胞表面可能的相互作用方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8fd/5076529/45fe911a9a77/zbc0441653620001.jpg

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