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荚膜组织胞浆菌 B 型葡聚糖的免疫调节作用与其多糖直径相关。

Immunomodulatory effects of serotype B glucuronoxylomannan from Cryptococcus gattii correlate with polysaccharide diameter.

机构信息

Instituto de Microbiologia, UFRJ, Rio de Janeiro, RJ, Brazil, 21941-902.

出版信息

Infect Immun. 2010 Sep;78(9):3861-70. doi: 10.1128/IAI.00111-10. Epub 2010 Jun 14.

Abstract

Glucuronoxylomannan (GXM), the major capsular component in the Cryptococcus complex, interacts with the immune system in multiple ways, which include the activation of Toll-like receptors (TLRs) and the modulation of nitric oxide (NO) production by phagocytes. In this study, we analyzed several structural parameters of GXM samples from Cryptococcus neoformans (serotypes A and D) and Cryptococcus gattii (serotypes B and C) and correlated them with the production of NO by phagocytes and the activation of TLRs. GXM fractions were differentially recognized by TLR2/TLR1 (TLR2/1) and TLR2/6 heterodimers expressed on TLR-transfected HEK293A cells. Higher NF-kappaB luciferase reporter activity induced by GXM was observed in cells expressing TLR2/1 than in cells transfected with TLR2/6 constructs. A serotype B GXM from C. gattii was the most effective polysaccharide fraction activating the TLR-mediated response. This serotype B polysaccharide, which was also highly efficient at eliciting the production of NO by macrophages, was similar to the other GXM samples in monosaccharide composition, zeta potential, and electrophoretic mobility. However, immunofluorescence with four different monoclonal antibodies and dynamic light-scattering analysis revealed that the serotype B GXM showed particularities in serological reactivity and had the smallest effective diameter among the GXM samples analyzed in this study. Fractionation of additional serotype B GXMs, followed by exposure of these fractions to macrophages, revealed a correlation between NO production and reduced effective diameters. Our results demonstrate a great functional diversity in GXM samples from different isolates and establish their abilities to differentially activate cellular responses. We propose that serological properties as well as physical chemical parameters, such as the diameter of polysaccharide molecules, may potentially influence the inflammatory response against Cryptococcus spp. and may contribute to the differences in granulomatous inflammation between cryptococcal species.

摘要

葡聚糖(GXM)是新型隐球菌复合体的主要荚膜成分,它通过多种方式与免疫系统相互作用,包括激活 Toll 样受体(TLR)和调节吞噬细胞产生一氧化氮(NO)。在这项研究中,我们分析了来自新型隐球菌(血清型 A 和 D)和隐球菌(血清型 B 和 C)的 GXM 样品的几个结构参数,并将其与吞噬细胞产生的 NO 量和 TLR 的激活相关联。GXM 分数被 TLR 转染的 HEK293A 细胞表达的 TLR2/TLR1(TLR2/1)和 TLR2/6 异二聚体以不同的方式识别。在表达 TLR2/1 的细胞中观察到的 GXM 诱导的 NF-κB 荧光素酶报告基因活性高于转染 TLR2/6 构建体的细胞。来自 C. gattii 的血清型 B GXM 是最有效的激活 TLR 介导的反应的多糖部分。这种血清型 B 多糖也非常有效地诱导巨噬细胞产生 NO,它在单糖组成、zeta 电位和电泳迁移率方面与其他 GXM 样品相似。然而,用四种不同的单克隆抗体进行免疫荧光和动态光散射分析表明,血清型 B GXM 在血清学反应性方面具有特殊性,并且在本研究分析的 GXM 样品中具有最小的有效直径。进一步对其他血清型 B GXM 进行分级,然后将这些级分暴露于巨噬细胞中,结果表明 NO 产生与有效直径降低之间存在相关性。我们的结果表明,来自不同分离株的 GXM 样品具有很大的功能多样性,并建立了它们差异激活细胞反应的能力。我们提出,血清学特性以及物理化学参数,如多糖分子的直径,可能会影响对隐球菌属的炎症反应,并可能导致不同种隐球菌属之间肉芽肿性炎症的差异。

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