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Direct recognition of the mycobacterial glycolipid, trehalose dimycolate, by C-type lectin Mincle

机译:通过C型凝集素Mincle直接识别分枝杆菌的糖脂,海藻糖二甲酸酯

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摘要

Tuberculosis remains a fatal disease caused by Mycobacterium tuberculosis, which contains various unique components that affect the host immune system. Trehalose-6,6′-dimycolate (TDM; also called cord factor) is a mycobacterial cell wall glycolipid that is the most studied immunostimulatory component of M. tuberculosis. Despite five decades of research on TDM, its host receptor has not been clearly identified. Here, we demonstrate that macrophage inducible C-type lectin (Mincle) is an essential receptor for TDM. Heat-killed mycobacteria activated Mincle-expressing cells, but the activity was lost upon delipidation of the bacteria; analysis of the lipid extracts identified TDM as a Mincle ligand. TDM activated macrophages to produce inflammatory cytokines and nitric oxide, which are completely suppressed in Mincle-deficient macrophages. In vivo TDM administration induced a robust elevation of inflammatory cytokines in sera and characteristic lung inflammation, such as granuloma formation. However, no TDM-induced lung granuloma was formed in Mincle-deficient mice. Whole mycobacteria were able to activate macrophages even in MyD88-deficient background, but the activation was significantly diminished in Mincle/MyD88 double-deficient macrophages. These results demonstrate that Mincle is an essential receptor for the mycobacterial glycolipid, TDM.
机译:结核病仍然是由结核分枝杆菌引起的致命疾病,结核分枝杆菌含有影响宿主免疫系统的各种独特成分。海藻糖-6,6'-二霉菌酸酯(TDM;也称为脐带因子)是一种分枝杆菌细胞壁糖脂,是结核分枝杆菌研究最多的免疫刺激成分。尽管对TDM进行了五十年的研究,但尚未明确鉴定其宿主受体。在这里,我们证明巨噬细胞诱导型C型凝集素(Mincle)是TDM的重要受体。热杀死的分枝杆菌激活了表达Mincle的细胞,但在细菌脱脂后失去了活性。脂质提取物的分析确定了TDM为Mincle配体。 TDM激活的巨噬细胞产生炎性细胞因子和一氧化氮,而在Mincle缺陷型巨噬细胞中,它们被完全抑制。体内TDM给药可引起血清中炎性细胞因子的强烈升高和特征性的肺部炎症,例如肉芽肿的形成。但是,在Mincle缺陷小鼠中没有形成TDM诱导的肺肉芽肿。整个分枝杆菌即使在MyD88缺陷的背景下也能激活巨噬细胞,但在Mincle / MyD88双重缺陷的巨噬细胞中,其激活却大大减少。这些结果证明Mincle是分枝杆菌糖脂TDM的必需受体。

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