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Structural Basis of Enhanced Crystallizability Induced by a Molecular Chaperone for Antibody Antigen-Binding Fragments

机译:抗体抗原结合碎片分子伴蛋白诱导的增强结晶性的结构基础

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摘要

Monoclonal antibodies constitute one of the largest groups of drugs to treat cancers and immune disorders, and are guiding the design of vaccines against infectious diseases. Fragments antigen-binding (Fabs) have been preferred over monoclonal antibodies for the structural characterization of antibody antigen complexes due to their relatively low flexibility. Nonetheless, Fabs often remain challenging to crystallize because of the surface characteristics of complementary determining regions and the residual flexibility in the hinge region between the variable and constant domains. Here, we used a variable heavy-chain (VHH) domain specific for the human kappa light chain to assist in the structure determination of three therapeutic Fabs that were recalcitrant to crystallization on their own. We show that this ligand alters the surface properties of the antibody ligand complex and lowers its aggregation temperature to favor crystallization. The VHH crystallization chaperone also restricts the flexible hinge of Fabs to a narrow range of angles, and so independently of the variable region. Our findings contribute a valuable approach to antibody structure determination and provide biophysical insight into the principles that govern the crystallization of macromolecules. (C) 2017 Elsevier Ltd. All rights reserved.
机译:单克隆抗体构成治疗癌症和免疫紊乱的最大药物之一,并指导对传染病的疫苗设计。片段抗原结合(Fabs)在单克隆抗体上优先于抗体抗原复合物的结构表征,由于它们的相对低的柔韧性。尽管如此,由于互补确定区域的表面特征和可变恒定结构域之间的铰链区域中的剩余柔韧性,Fabs经常保持挑战。在这里,我们使用了用于人κ轻链特异性的可变重链(VHH)域,以帮助结构测定三种治疗FAB,其顽固的晶状体是顽固的晶体化。我们表明,该配体改变了抗体配体络合物的表面性质,并降低了其聚集温度以支持结晶。 VHH结晶伴侣伴侣还将Fabs的柔性铰链限制为窄的角度范围,因此独立于可变区。我们的发现有助于抗体结构测定的有价值的方法,并提供对治理大分子结晶的原理的生物物理洞察。 (c)2017 Elsevier Ltd.保留所有权利。

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