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Single-Molecule 3D Images of Hole-Hole IgG1 Homodimers by Individual-Particle Electron Tomography

机译:通过单个粒子电子断层扫描技术的孔-孔 IgG1均聚物的单分子3D图像。

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摘要

The engineering of immunoglobulin-G molecules (IgGs) is of wide interest for improving therapeutics, for example by modulating the activity or multiplexing the specificity of IgGs to recognize more than one antigen. Optimization of engineered IgG requires knowledge of three-dimensional (3D) structure of synthetic IgG. However, due to flexible nature of the molecules, their structural characterization is challenging. Here, we use our reported individual-particle electron tomography (IPET) method with optimized negative-staining (OpNS) for direct 3D reconstruction of individual IgG hole-hole homodimer molecules. The hole-hole homodimer is an undesired variant generated during the production of a bispecific antibody using the knob-into-hole heterodimer technology. A total of 64 IPET 3D density maps at ~15 Å resolutions were reconstructed from 64 individual molecules, revealing 64 unique conformations. In addition to the known Y-shaped conformation, we also observed an unusual X-shaped conformation. The 3D structure of the X-shaped conformation contributes to our understanding of the structural details of the interaction between two heavy chains in the Fc domain. The IPET approach, as an orthogonal technique to characterize the 3D structure of therapeutic antibodies, provides insight into the 3D structural variety and dynamics of heterogeneous IgG molecules.
机译:免疫球蛋白-G分子(IgG)的工程改造对于改善治疗方法具有广泛的意义,例如,通过调节IgG的活性或复用IgG的特异性以识别一种以上的抗原。优化工程化IgG需要了解合成IgG的三维(3D)结构。然而,由于分子的柔性性质,其结构表征具有挑战性。在这里,我们使用已报告的具有优化的负染色(OpNS)的单粒子电子断层扫描(IPET)方法对单个IgG孔-孔均二聚体分子进行直接3D重建。孔-孔同二聚体是在使用旋钮入孔异二聚体技术产生双特异性抗体的过程中产生的不期望的变体。从64个单个分子重建了总共约15Å分辨率的64个IPET 3D密度图,揭示了64个独特的构象。除了已知的Y形构象,我们还观察到了不寻常的X形构象。 X形构象的3D结构有助于我们理解Fc结构域中两条重链之间相互作用的结构细节。 IPET方法作为一种表征治疗性抗体3D结构的正交技术,可洞悉异类IgG分子的3D结构多样性和动力学。

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