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寄生线虫产物ES-62的糖基化磷酸胆碱可调节补体激活。

The Carbohydrate-linked Phosphorylcholine of the Parasitic Nematode Product ES-62 Modulates Complement Activation.

作者信息

Ahmed Umul Kulthum, Maller N Claire, Iqbal Asif J, Al-Riyami Lamyaa, Harnett William, Raynes John G

机构信息

From the Department of Immunology and Infection, Faculty of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, Keppel Street, London WC1E 7HT and.

the Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Glasgow G4 0RE, United Kingdom.

出版信息

J Biol Chem. 2016 May 27;291(22):11939-53. doi: 10.1074/jbc.M115.702746. Epub 2016 Apr 4.

Abstract

Parasitic nematodes manufacture various carbohydrate-linked phosphorylcholine (PCh)-containing molecules, including ES-62, a protein with an N-linked glycan terminally substituted with PCh. The PCh component is biologically important because it is required for immunomodulatory effects. We showed that most ES-62 was bound to a single protein, C-reactive protein (CRP), in normal human serum, displaying a calcium-dependent, high-avidity interaction and ability to form large complexes. Unexpectedly, CRP binding to ES-62 failed to efficiently activate complement as far as the C3 convertase stage in comparison with PCh-BSA and PCh-containing Streptococcus pneumoniae cell wall polysaccharide. C1q capture assays demonstrated an ES-62-CRP-C1q interaction in serum. The three ligands all activated C1 and generated C4b to similar extents. However, a C2a active site was not generated following ES-62 binding to CRP, demonstrating that C2 cleavage was far less efficient for ES-62-containing complexes. We proposed that failure of C2 cleavage was due to the flexible nature of carbohydrate-bound PCh and that reduced proximity of the C1 complex was the reason that C2 was poorly cleaved. This was confirmed using synthetic analogues that were similar to ES-62 only in respect of having a flexible PCh. Furthermore, ES-62 was shown to deplete early complement components, such as the rate-limiting C4, following CRP interaction and thereby inhibit classical pathway activation. Thus, flexible PCh-glycan represents a novel mechanism for subversion of complement activation. These data illustrate the importance of the rate-limiting C4/C2 stage of complement activation and reveal a new addition to the repertoire of ES-62 immunomodulatory mechanisms with possible therapeutic applications.

摘要

寄生线虫会制造各种含有碳水化合物连接的磷酰胆碱(PCh)的分子,包括ES-62,一种N-连接聚糖末端被PCh取代的蛋白质。PCh成分具有重要的生物学意义,因为它是免疫调节作用所必需的。我们发现,在正常人血清中,大多数ES-62与单一蛋白质C反应蛋白(CRP)结合,呈现出钙依赖性、高亲和力相互作用以及形成大复合物的能力。出乎意料的是,与PCh-BSA和含PCh的肺炎链球菌细胞壁多糖相比,CRP与ES-62的结合在C3转化酶阶段之前未能有效激活补体。C1q捕获试验证明血清中存在ES-62-CRP-C1q相互作用。这三种配体均能激活C1并产生相似程度的C4b。然而,ES-62与CRP结合后未产生C2a活性位点,这表明含ES-62的复合物对C2的裂解效率要低得多。我们认为C2裂解失败是由于碳水化合物结合的PCh具有柔性,而C1复合物的接近程度降低是C2裂解不佳的原因。使用仅在具有柔性PCh方面与ES-62相似的合成类似物证实了这一点。此外,研究表明,在与CRP相互作用后,ES-62会消耗早期补体成分,如限速成分C4,从而抑制经典途径的激活。因此,柔性PCh-聚糖代表了一种颠覆补体激活的新机制。这些数据说明了补体激活限速C4/C2阶段的重要性,并揭示了ES-62免疫调节机制中的一种新作用,可能具有治疗应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85b2/4882459/5eb8702dbd5b/zbc0251644550001.jpg

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