Wells Christine A, Salvage-Jones Judith A, Li Xin, Hitchens Kelly, Butcher Suzanne, Murray Rachael Z, Beckhouse Anthony G, Lo Yu-Lan-Sandra, Manzanero Silvia, Cobbold Christian, Schroder Kate, Ma Bo, Orr Sally, Stewart Lauren, Lebus Daniel, Sobieszczuk Peter, Hume David A, Stow Jennifer, Blanchard Helen, Ashman Robert B
National Centre for Adult Stem Cell Research, Eskitis Institute for Cell and Molecular Therapies, Griffith University, Brisbane, Queensland, Australia.
J Immunol. 2008 Jun 1;180(11):7404-13. doi: 10.4049/jimmunol.180.11.7404.
The recognition of carbohydrate moieties by cells of the innate immune system is emerging as an essential element in antifungal immunity, but despite the number and diversity of lectins expressed by innate immune cells, few carbohydrate receptors have been characterized. Mincle, a C-type lectin, is expressed predominantly on macrophages, and is here shown to play a role in macrophage responses to the yeast Candida albicans. After exposure to the yeast in vitro, Mincle localized to the phagocytic cup, but it was not essential for phagocytosis. In the absence of Mincle, production of TNF-alpha by macrophages was reduced, both in vivo and in vitro. In addition, mice lacking Mincle showed a significantly increased susceptibility to systemic candidiasis. Thus, Mincle plays a novel and nonredundant role in the induction of inflammatory signaling in response to C. albicans infection.
天然免疫系统细胞对碳水化合物部分的识别正成为抗真菌免疫的一个关键要素,然而,尽管天然免疫细胞表达的凝集素数量众多且种类多样,但已被鉴定的碳水化合物受体却寥寥无几。Mincle是一种C型凝集素,主要在巨噬细胞上表达,本文表明它在巨噬细胞对白色念珠菌酵母的反应中发挥作用。体外接触该酵母后,Mincle定位于吞噬杯,但它对吞噬作用并非必不可少。在缺乏Mincle的情况下,巨噬细胞在体内和体外产生肿瘤坏死因子-α均减少。此外,缺乏Mincle的小鼠对系统性念珠菌病的易感性显著增加。因此,Mincle在应对白色念珠菌感染时诱导炎症信号传导中发挥着全新且不可替代的作用。