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去糖基化人IgG4-Fc的晶体结构

Crystal structure of deglycosylated human IgG4-Fc.

作者信息

Davies Anna M, Jefferis Roy, Sutton Brian J

机构信息

King's College London, Randall Division of Cell and Molecular Biophysics, New Hunt's House, London SE1 1UL, United Kingdom; Medical Research Council & Asthma UK Centre in Allergic Mechanisms of Asthma, London, United Kingdom.

University of Birmingham, College of Medical & Dental Sciences, School of Immunity & Infection, Edgbaston, Birmingham B15 2TT, United Kingdom.

出版信息

Mol Immunol. 2014 Nov;62(1):46-53. doi: 10.1016/j.molimm.2014.05.015. Epub 2014 Jun 24.

Abstract

The Fc region of IgG antibodies, important for effector functions such as antibody-dependent cell-mediated cytotoxicity, antibody-dependent cellular phagocytosis and complement activation, contains an oligosaccharide moiety covalently attached to each C(H)2 domain. The oligosaccharide not only orients the C(H)2 domains but plays an important role in influencing IgG effector function, and engineering the IgG-Fc oligosaccharide moiety is an important aspect in the design of therapeutic monoclonal IgG antibodies. Recently we reported the crystal structure of glycosylated IgG4-Fc, revealing structural features that could explain the anti-inflammatory biological properties of IgG4 compared with IgG1. We now report the crystal structure of enzymatically deglycosylated IgG4-Fc, derived from human serum, at 2.7Å resolution. Intermolecular C(H)2-C(H)2 domain interactions partially bury the C(H)2 domain surface that would otherwise be exposed by the absence of oligosaccharide, and two Fc molecules are interlocked in a symmetric, open conformation. The conformation of the C(H)2 domain DE loop, to which oligosaccharide is attached, is altered in the absence of carbohydrate. Furthermore, the C(H)2 domain FG loop, important for Fcγ receptor and C1q binding, adopts two different conformations. One loop conformation is unique to IgG4 and would disrupt binding, consistent with IgG4's anti-inflammatory properties. The second is similar to the conserved conformation found in IgG1, suggesting that in contrast to IgG1, the IgG4 C(H)2 FG loop is dynamic. Finally, crystal packing reveals a hexameric arrangement of IgG4-Fc molecules, providing further clues about the interaction between C1q and IgG.

摘要

IgG抗体的Fc区域对于诸如抗体依赖性细胞介导的细胞毒性、抗体依赖性细胞吞噬作用和补体激活等效应功能很重要,它含有一个与每个C(H)2结构域共价连接的寡糖部分。该寡糖不仅使C(H)2结构域定向,而且在影响IgG效应功能方面发挥重要作用,对IgG-Fc寡糖部分进行工程改造是治疗性单克隆IgG抗体设计的一个重要方面。最近我们报道了糖基化IgG4-Fc的晶体结构,揭示了一些结构特征,这些特征可以解释与IgG1相比IgG4的抗炎生物学特性。我们现在报道了源自人血清的经酶促去糖基化的IgG4-Fc的晶体结构,分辨率为2.7Å。分子间的C(H)2-C(H)2结构域相互作用部分掩埋了C(H)2结构域表面,否则该表面会因寡糖的缺失而暴露,并且两个Fc分子以对称的开放构象互锁。在没有碳水化合物的情况下,与寡糖相连的C(H)2结构域DE环的构象发生了改变。此外,对于Fcγ受体和C1q结合很重要的C(H)2结构域FG环呈现出两种不同的构象。一种环构象是IgG4特有的,会破坏结合,这与IgG4的抗炎特性一致。第二种与在IgG1中发现的保守构象相似,这表明与IgG1不同,IgG4的C(H)2 FG环是动态的。最后,晶体堆积揭示了IgG4-Fc分子的六聚体排列,为C1q与IgG之间的相互作用提供了进一步的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0d1/4166458/44203f2418ee/fx1.jpg

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