Jefferis R, Lund J, Pound J D
Department of Immunology, Medical School, University of Birmingham, Edgbaston, UK.
Immunol Rev. 1998 Jun;163:59-76. doi: 10.1111/j.1600-065x.1998.tb01188.x.
The Fc region of human IgG expresses interaction sites for many effector ligands. In this review the topographical distributions of ten of these sites are discussed in relation to functional requirement. It is apparent that interaction sites localised to the inter-CH2-CH3 domain region of the Fc allow for functional divalency, whereas sites localised to the hinge proximal region of the CH2 domain are functionally monovalent, with expression of the latter sites being particularly dependent on glycosylation. All x-ray crystal structures for Fc and Fc-ligand complexes report that the protein structure of the hinge proximal region of the CH2 domain is "disordered", suggesting "internal mobility". We propose a model in which such "internal mobility" results in the generation of a dynamic equilibrium between multiple conformers, certain of which express interaction sites specific to individual ligands. The emerging understanding of the influence of oligosaccharide/protein interactions on protein conformation and biological function of IgG antibodies suggests a potential to generate novel glycoforms of antibody molecules having unique profiles of effector functions.
人IgG的Fc区域表达了许多效应配体的相互作用位点。在本综述中,将讨论其中十个位点的拓扑分布与功能需求的关系。很明显,位于Fc的CH2-CH3结构域间区域的相互作用位点具有功能性二价性,而位于CH2结构域铰链近端区域的位点在功能上是单价的,后者位点的表达尤其依赖于糖基化。所有Fc和Fc-配体复合物的X射线晶体结构报告称,CH2结构域铰链近端区域的蛋白质结构是“无序的”,表明存在“内部流动性”。我们提出了一个模型,其中这种“内部流动性”导致多种构象体之间产生动态平衡,其中某些构象体表达特定于单个配体的相互作用位点。对寡糖/蛋白质相互作用对IgG抗体蛋白质构象和生物学功能影响的新认识表明,有可能产生具有独特效应功能谱的新型抗体糖型。