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Molecular basis of in vitro affinity maturation and functional evolution of a neutralizing anti-human GM-CSF antibody

机译:中和性抗人GM-CSF抗体体外亲和力成熟和功能进化的分子基础

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摘要

X-ray structure analysis of 4 antibody Fab fragments, each in complex with human granulocyte macrophage colony stimulating factor (GM-CSF), was performed to investigate the changes at the protein-protein binding interface during the course of in vitro affinity maturation by phage display selection. The parental antibody MOR03929 was compared to its derivatives MOR04252 (CDR-H2 optimized), MOR04302 (CDR-L3 optimized) and MOR04357 (CDR-H2 and CDR-L3 optimized). All antibodies bind to a conformational epitope that can be divided into 3 sub-epitopes. Specifically, MOR04357 binds to a region close to the GM-CSF N-terminus (residues 11–24), a short second sub-epitope (residues 83–89) and a third at the C-terminus (residues 112–123). Modifications introduced during affinity maturation in CDR-H2 and CDR-L3 led to the establishment of additional hydrogen bonds and van der Waals contacts, respectively, providing a rationale for the observed improvement in binding affinity and neutralization potency. Once GM-CSF is complexed to the antibodies, modeling predicts a sterical clash with GM-CSF binding to GM-CSF receptor α and β chain. This predicted mutually exclusive binding was confirmed by a GM-CSF receptor α chain ligand binding inhibition assay. Finally, high throughput sequencing of clones obtained after affinity maturation phage display pannings revealed highly selected consensus sequences for CDR-H2 as well for CDR-L3, which are in accordance with the sequence of the highest affinity antibody MOR04357. The resolved crystal structures highlight the criticality of these strongly selected residues for high affinity interaction with GM-CSF.
机译:对四个抗体Fab片段进行X射线结构分析,每个片段均与人类粒细胞巨噬细胞集落刺激因子(GM-CSF)结合,以研究噬菌体在体外亲和力成熟过程中蛋白质-蛋白质结合界面的变化显示选择。将亲本抗体MOR03929与其衍生物MOR04252(CDR-H2优化),MOR04302(CDR-L3优化)和MOR04357(CDR-H2和CDR-L3优化)进行比较。所有抗体均结合可被分为3个亚表位的构象表位。具体来说,MOR04357结合至靠近GM-CSF N末端的区域(残基11-24),短的第二个亚表位(残基83-89)和第三个C末端(残基112-123)。在CDR-H2和CDR-L3的亲和力成熟过程中引入的修饰分别导致建立额外的氢键和范德华接触,从而为观察到的结合亲和力和中和力的改善提供了理由。一旦GM-CSF与抗体形成复合物,建模将预测GM-CSF与GM-CSF受体α和β链结合的空间冲突。通过GM-CSF受体α链配体结合抑制试验证实了这种预测的互斥结合。最后,在亲和力成熟噬菌体展示淘选之后获得的克隆的高通量测序揭示了针对CDR-H2以及针对CDR-L3的高度选择的共有序列,其符合最高亲和力抗体MOR04357的序列。解析的晶体结构突出了这些高度选择的残基对于与GM-CSF进行高亲和力相互作用的关键。

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