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Restricted Diversity of Paratope Residues in a Collection of 227 Antibody-Antigen Complexes

机译:在227抗体 - 抗原复合物的集合中限制分析物残留物的多样性

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Antibody molecules are able to recognize any antigen with high affinity and specificity. To get insight into the molecular diversity at the source of this functional diversity, we compiled and analyzed a non-redundant aligned collection of 227 structures of antibody-antigen complexes. Free energy of binding of all the residue side-chains was quantified by computational alanine scanning, allowing the first large-scale quantitative description of antibody paratopes. This demonstrated that as few as 8 residues among 30 key positions are sufficient to explain 80% of the binding free energy in most complexes. At these positions, the residue distribution is not only different from that of other surface residues, but also dependent on the role played by the side chain in the interaction, residues participating in the binding energy being mainly aromatic residues, and Gly or Ser otherwise. To question the generality of these binding characteristics, we isolated an antibody fragment by phage-display using a biased synthetic repertoire with only two diversified complementary determining regions (CDRs) and solved its structure in complex with its antigen. Despite this restricted diversity, the structure demonstrated that all CDRs were involved in the interaction with the antigen and that the rules derived from the natural antibody repertoire apply to this synthetic binder, thus demonstrating the robustness and universality of our results.
机译:抗体分子能够识别具有高亲和力和特异性的任何抗原。为了在这种功能多样性的来源实现分子多样性的洞察,我们编制和分析了227个抗体 - 抗原复合物结构的非冗余对准集合。通过计算丙氨酸扫描量化所有残留物侧链的自由能量,允许抗体估算的第一个大规模定量描述。这证明,在30个关键位置之间的8个残留量足以解释大多数复合物中的80%的结合可自由能。在这些位置,残留物分布不仅与其他表面残留物的不同,而且还依赖于侧链在相互作用中发挥的作用,参与结合能量的残基主要是芳族残基,并且否则否则芳族残基。为了质疑这些结合特性的一般性,我们使用偏置合成曲目的噬菌体显示器分离抗体片段,仅使用两个多样化的互补确定区域(CDR)并用其抗原解决其结构。尽管有这种限制的多样性,但该结构表明所有CDR都参与了与抗原的相互作用,并且从天然抗体曲目中衍生的规则适用于这种合成粘合剂,从而展示了我们结果的鲁棒性和普遍性。

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