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甘露糖结合凝集素:靶向微生物界进行补体攻击和调理吞噬作用。

Mannose-binding lectin: targeting the microbial world for complement attack and opsonophagocytosis.

作者信息

Jack D L, Klein N J, Turner M W

机构信息

Immunobiology Unit, Institute of Child Health, University College London, UK.

出版信息

Immunol Rev. 2001 Apr;180:86-99. doi: 10.1034/j.1600-065x.2001.1800108.x.

Abstract

Mannose-binding lectin (MBL) is an important constituent of the innate immune system. This protein binds through multiple lectin domains to the repeating sugar arrays that decorate many microbial surfaces, and is then able to activate the complement system through a specific protease called MBL-associated protease-2. We have used flow cytometry to study both the binding of MBL to microorganisms and the subsequent activation of complement. For selected Gram-negative organisms, such as Salmonella and Neisseria, we have examined the relative roles of lipopolysaccharide (LPS) structure and capsule in determining binding and conclude that the LPS is of major importance. Our results from studies with several clinically relevant organisms also show that MBL binding detected by flow cytometry leads to measurable activation of purified C4, suggesting that the bound lectin is capable of initiating opsonophagocytosis and/or bacterial lysis. There is an increasing literature suggesting that MBL deficiency, which mainly results from three relatively common single point mutations in exon 1 of the gene, predisposes both to infection by extracellular pathogens and to autoimmune disease. In addition, the protein also modulates disease severity, at least in part through a complex, dose-dependent influence on cytokine production. The mechanisms and signalling pathways involved in such processes remain to be elucidated.

摘要

甘露糖结合凝集素(MBL)是天然免疫系统的重要组成部分。该蛋白通过多个凝集素结构域与修饰许多微生物表面的重复糖阵列结合,然后能够通过一种名为MBL相关蛋白酶-2的特定蛋白酶激活补体系统。我们使用流式细胞术研究了MBL与微生物的结合以及随后补体的激活。对于选定的革兰氏阴性菌,如沙门氏菌和奈瑟氏菌,我们研究了脂多糖(LPS)结构和荚膜在决定结合中的相对作用,并得出结论,LPS至关重要。我们对几种临床相关微生物的研究结果还表明,通过流式细胞术检测到的MBL结合会导致纯化的C4发生可测量的激活,这表明结合的凝集素能够启动调理吞噬作用和/或细菌裂解。越来越多的文献表明,MBL缺乏主要由该基因外显子1中的三个相对常见的单点突变引起,它既易患细胞外病原体感染,也易患自身免疫性疾病。此外,该蛋白还至少部分地通过对细胞因子产生的复杂、剂量依赖性影响来调节疾病严重程度。这些过程中涉及的机制和信号通路仍有待阐明。

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