Structure and Dynamics Guiding Design of Antibody Therapeutics and Vaccines.

Pub Date : 2023-10-18 DOI:10.3390/antib12040067
Monica L Fernández-Quintero, Nancy D Pomarici, Anna-Lena M Fischer, Valentin J Hoerschinger, Katharina B Kroell, Jakob R Riccabona, Anna S Kamenik, Johannes R Loeffler, James A Ferguson, Hailee R Perrett, Klaus R Liedl, Julianna Han, Andrew B Ward
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Abstract

Antibodies and other new antibody-like formats have emerged as one of the most rapidly growing classes of biotherapeutic proteins. Understanding the structural features that drive antibody function and, consequently, their molecular recognition is critical for engineering antibodies. Here, we present the structural architecture of conventional IgG antibodies alongside other formats. We emphasize the importance of considering antibodies as conformational ensembles in solution instead of focusing on single-static structures because their functions and properties are strongly governed by their dynamic nature. Thus, in this review, we provide an overview of the unique structural and dynamic characteristics of antibodies with respect to their antigen recognition, biophysical properties, and effector functions. We highlight the numerous technical advances in antibody structure prediction and design, enabled by the vast number of experimentally determined high-quality structures recorded with cryo-EM, NMR, and X-ray crystallography. Lastly, we assess antibody and vaccine design strategies in the context of structure and dynamics.

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抗体治疗和疫苗的结构和动力学指导设计。
抗体和其他新的抗体样形式已经成为增长最快的生物治疗蛋白类别之一。了解驱动抗体功能的结构特征,从而了解其分子识别,对于工程抗体至关重要。在这里,我们介绍了传统IgG抗体的结构结构以及其他形式。我们强调将抗体视为溶液中的构象集合的重要性,而不是关注单一的静态结构,因为它们的功能和性质强烈受其动态性质的支配。因此,在这篇综述中,我们概述了抗体在抗原识别、生物物理特性和效应器功能方面的独特结构和动力学特征。我们强调了抗体结构预测和设计方面的众多技术进步,这得益于冷冻电镜、核磁共振和X射线晶体学记录的大量实验确定的高质量结构。最后,我们从结构和动力学的角度评估抗体和疫苗的设计策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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