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鉴定分枝杆菌α-葡聚糖作为DC-SIGN的新型配体:分枝杆菌荚膜多糖在宿主免疫调节中的作用。

Identification of mycobacterial alpha-glucan as a novel ligand for DC-SIGN: involvement of mycobacterial capsular polysaccharides in host immune modulation.

作者信息

Geurtsen Jeroen, Chedammi Sunita, Mesters Joram, Cot Marlène, Driessen Nicole N, Sambou Tounkang, Kakutani Ryo, Ummels Roy, Maaskant Janneke, Takata Hiroki, Baba Otto, Terashima Tatsuo, Bovin Nicolai, Vandenbroucke-Grauls Christina M J E, Nigou Jérôme, Puzo Germain, Lemassu Anne, Daffé Mamadou, Appelmelk Ben J

机构信息

Department of Medical Microbiology and Infection Control, VU University Medical Center, Amsterdam, The Netherlands.

出版信息

J Immunol. 2009 Oct 15;183(8):5221-31. doi: 10.4049/jimmunol.0900768. Epub 2009 Sep 25.

Abstract

Mycobacterium tuberculosis possesses a variety of immunomodulatory factors that influence the host immune response. When the bacillus encounters its target cell, the outermost components of its cell envelope are the first to interact. Mycobacteria, including M. tuberculosis, are surrounded by a loosely attached capsule that is mainly composed of proteins and polysaccharides. Although the chemical composition of the capsule is relatively well studied, its biological function is only poorly understood. The aim of this study was to further assess the functional role of the mycobacterial capsule by identifying host receptors that recognize its constituents. We focused on alpha-glucan, which is the dominant capsular polysaccharide. Here we demonstrate that M. tuberculosis alpha-glucan is a novel ligand for the C-type lectin DC-SIGN (dendritic cell-specific ICAM-3-grabbing nonintegrin). By using related glycogen structures, we show that recognition of alpha-glucans by DC-SIGN is a general feature and that the interaction is mediated by internal glucosyl residues. As for mannose-capped lipoarabinomannan, an abundant mycobacterial cell wall-associated glycolipid, binding of alpha-glucan to DC-SIGN stimulated the production of immunosuppressive IL-10 by LPS-activated monocyte-derived dendritic cells. By using specific inhibitors, we show that this IL-10 induction was DC-SIGN-dependent and also required acetylation of NF-kappaB. Finally, we demonstrate that purified M. tuberculosis alpha-glucan, in contrast to what has been reported for fungal alpha-glucan, was unable to activate TLR2.

摘要

结核分枝杆菌拥有多种影响宿主免疫反应的免疫调节因子。当杆菌遇到其靶细胞时,其细胞壁的最外层成分首先发生相互作用。包括结核分枝杆菌在内的分枝杆菌被一层松散附着的荚膜所包围,该荚膜主要由蛋白质和多糖组成。尽管对荚膜的化学成分研究得相对充分,但其生物学功能却知之甚少。本研究的目的是通过鉴定识别其成分的宿主受体来进一步评估分枝杆菌荚膜的功能作用。我们聚焦于α-葡聚糖,它是主要的荚膜多糖。在此我们证明,结核分枝杆菌α-葡聚糖是C型凝集素DC-SIGN(树突状细胞特异性ICAM-3结合非整合素)的一种新型配体。通过使用相关的糖原结构,我们表明DC-SIGN对α-葡聚糖的识别是一个普遍特征,并且这种相互作用是由内部葡萄糖残基介导的。至于甘露糖封端的脂阿拉伯甘露聚糖,一种丰富的分枝杆菌细胞壁相关糖脂,α-葡聚糖与DC-SIGN的结合刺激了脂多糖激活的单核细胞衍生树突状细胞产生免疫抑制性白细胞介素-10。通过使用特异性抑制剂,我们表明这种白细胞介素-10的诱导是DC-SIGN依赖性的,并且还需要核因子κB的乙酰化。最后,我们证明,与已报道的真菌α-葡聚糖不同,纯化的结核分枝杆菌α-葡聚糖无法激活Toll样受体2。

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