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Role of antibody heavy and light chain interface residues in affinity maturation of binding to HIV envelope glycoprotein

机译:重和轻链抗体接口的作用残留的亲和力成熟绑定艾滋病毒包膜糖蛋白

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摘要

The FV region of an antibody consists of the heavy chain (HC) and light chain (LC) variable domains whose association is maintained by a series of conserved, non-polar interactions. During chronic infections, somatic mutations are induced, often in the HC/LC interface. Sequence variation in these interactions allows the HC and LC domains to inhabit a range of orientations relative to one another. Thus, we hypothesize that these interface mutations are critical to orient and rigidify the HC/LC interface to arrange the paratope for optimal interaction with the antigen, thereby affecting antigen binding affinity allosterically. To test this hypothesis, we measured the HC/LC orientation of a set of broad and potent human HIV neutralizing antibodies. The HC/LC interface of these antibodies contained a large number of mutations and achieved unusual relative orientations compared to other human antibodies. We expressed and characterized a panel of recombinant HIV CD4 binding site antibodies as the fully matured variant and compared these with variants mutated to the HC/LC interface of the inferred unmutated common ancestor antibody. We found that HC/LC interface reverted antibodies have a reduced affinity, confirming that introduction of somatic mutations in the HC/LC interface was one of the critical steps in affinity maturation. We then used the Rosetta software suite to ex- amine the mechanisms through which these mutations affect binding affinity. We determined to what extent the mutations were critical in altering the relative orientation of HC/LC domains to a conformation that is competent to bind the antigen. We further determined whether the mutations excluded alternative HC/LC conformations that would be incompetent to bind the antigen. These findings suggest that somatic muta- tions in the HC/LC interface, distant from the antigen/antibody contact region, play a critical role in affinity maturation of HIV antibodies by preconfiguring the bound conformation of the antibody in the orientation required for high affinity recognition of the antigen. Thus, optimization of HC/LC interface could serve as an important tool for maximizing antibody/antigen binding affinity without altering antigen contact residues.
机译:抗体由阵线地区的重链(HC)和轻链(LC)变量域协会是由一系列维护谁的守恒的,非极性相互作用。感染,体细胞突变诱导,常常在HC / LC接口。这些交互允许HC和LC域居住在一系列相对取向一个另一个。界面突变东方和至关重要固定HC / LC接口安排抗体结合部位为最佳的交互抗原,从而影响抗原绑定亲和力变构。我们测量了HC / LC取向的一组广泛而强大的人类艾滋病毒中和抗体。抗体包含大量的突变,取得了不寻常的相对方向相对于其他人类抗体。特征和重组HIV CD4的面板抗体结合位点的完全成熟变体和比较这些变异突变HC / LC推断不突变的界面共同的祖先抗体。界面恢复抗体有减少亲和力,确认引入体细胞突变在HC / LC接口之一亲和力成熟的关键步骤。使用罗塞塔软件套件,胺通过这些突变影响机制绑定关联。突变是改变的关键HC / LC域的相对取向主管结合的构象抗原。突变排除另类HC / LC构象是无能的绑定抗原。问好,在HC / LC接口,远离抗原/抗体接触区,发挥关键作用的亲和力成熟的艾滋病病毒抗体通过预先配置绑定构象抗体的取向所需的高亲和力识别抗原。可以作为一个重要的工具来最大化抗体/抗原亲和力改变抗原接触残留。

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