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Dynamic Views of the Fc Region of Immunoglobulin G Provided by Experimental and Computational Observations

机译:实验和计算观察结果提供的免疫球蛋白G Fc区的动态视图

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摘要

The Fc portion of immunoglobulin G (IgG) is a horseshoe-shaped homodimer, which interacts with various effector proteins, including Fcγ receptors (FcγRs). These interactions are critically dependent on the pair of N-glycans packed between the two CH2 domains. Fucosylation of these N-glycans negatively affects human IgG1-FcγRIIIa interaction. The IgG1-Fc crystal structures mostly exhibit asymmetric quaternary conformations with divergent orientations of CH2 with respect to CH3. We aimed to provide dynamic views of IgG1-Fc by performing long-timescale molecular dynamics (MD) simulations, which were experimentally validated by small-angle X-ray scattering and nuclear magnetic resonance spectroscopy. Our simulation results indicated that the dynamic conformational ensembles of Fc encompass most of the previously reported crystal structures determined in both free and complex forms, although the major Fc conformers in solution exhibited almost symmetric, stouter quaternary structures, unlike the crystal structures. Furthermore, the MD simulations suggested that the N-glycans restrict the motional freedom of CH2 and endow quaternary-structure plasticity through multiple intramolecular interaction networks. Moreover, the fucosylation of these N-glycans restricts the conformational freedom of the proximal tyrosine residue of functional importance, thereby precluding its interaction with FcγRIIIa. The dynamic views of Fc will provide opportunities to control the IgG interactions for developing therapeutic antibodies.
机译:免疫球蛋白G(IgG)的Fc部分是马蹄形的同型二聚体,它与各种效应蛋白(包括Fcγ受体(FcγRs))相互作用。这些相互作用关键取决于两个CH2域之间的N-聚糖对。这些N-聚糖的岩藻糖基化会对人IgG1-FcγRIIIa相互作用产生负面影响。 IgG1-Fc晶体结构大多表现出不对称的四级构象,CH2相对于CH3的取向不同。我们旨在通过执行长时间分子动力学(MD)模拟来提供IgG1-Fc的动态视图,该模拟已通过小角度X射线散射和核磁共振波谱进行了实验验证。我们的模拟结果表明,虽然溶液中的主要Fc构象异构体显示出几乎对称的,直立的四元结构,但Fc的动态构象结构涵盖了大多数先前报告的游离和复杂形式的晶体结构。此外,MD模拟表明,N-聚糖通过多个分子内相互作用网络限制了CH2的运动自由度并赋予四级结构可塑性。而且,这些N-聚糖的岩藻糖基化限制了具有功能重要性的近端酪氨酸残基的构象自由,从而排除了其与FcγRIIIa的相互作用。 Fc的动态视图将提供机会来控制IgG相互作用以开发治疗性抗体。

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