HIV-1 中和抗体亲和力成熟 Fab 针对 gp41 三聚体卷曲螺旋内部的结构基础。
Structural basis of HIV-1 neutralization by affinity matured Fabs directed against the internal trimeric coiled-coil of gp41.
机构信息
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland, United States of America.
出版信息
PLoS Pathog. 2010 Nov 11;6(11):e1001182. doi: 10.1371/journal.ppat.1001182.
The conserved internal trimeric coiled-coil of the N-heptad repeat (N-HR) of HIV-1 gp41 is transiently exposed during the fusion process by forming a pre-hairpin intermediate, thus representing an attractive target for the design of fusion inhibitors and neutralizing antibodies. In previous studies we reported a series of broadly neutralizing mini-antibodies derived from a synthetic naïve human combinatorial antibody library by panning against a mimetic of the trimeric N-HR coiled coil, followed by affinity maturation using targeted diversification of the CDR-H2 loop. Here we report crystal structures of the N-HR mimetic 5-Helix with two Fabs that represent the extremes of this series: Fab 8066 is broadly neutralizing across a wide panel of B and C type HIV-1 viruses, whereas Fab 8062 is non-neutralizing. The crystal structures reveal important differences in the conformations of the CDR-H2 loops in the complexes that propagate into other regions of the antigen-antibody interface, and suggest that both neutralization properties and affinity for the target can be attributed, at least in part, to the differences in the interactions of the CDR-H2 loops with the antigen. Furthermore, modeling of the complex of an N-HR trimer with three Fabs suggests that the CDR-H2 loop may be involved in close intermolecular contacts between neighboring antibody molecules, and that such contacts may hinder the formation of complexes between the N-HR trimer and more than one antibody molecule depending on the conformation of the bound CDR-H2 loop which is defined by its interactions with antigen. Comparison with the crystal structure of the complex of 5-Helix with another neutralizing monoclonal antibody known as D5, derived using an entirely different antibody library and panning procedure, reveals remarkable convergence in the optimal sequence and conformation of the CDR-H2 loop.
HIV-1 gp41 的 N-七肽重复(N-HR)的保守内部三聚体卷曲螺旋在融合过程中通过形成发夹前中间体短暂暴露,因此代表了融合抑制剂和中和抗体设计的有吸引力的靶标。在以前的研究中,我们报道了一系列源自合成的原始人组合抗体文库的广泛中和的迷你抗体,该文库通过针对三聚体 N-HR 卷曲螺旋的模拟物进行淘选,然后使用 CDR-H2 环的靶向多样化进行亲和力成熟。在这里,我们报告了 N-HR 模拟物 5-螺旋与两个 Fab 的晶体结构,这两个 Fab 代表了该系列的极端:Fab 8066 对广泛的 B 和 C 型 HIV-1 病毒具有广泛的中和作用,而 Fab 8062 则没有中和作用。晶体结构揭示了复合物中 CDR-H2 环构象的重要差异,这些差异会传播到抗原 - 抗体界面的其他区域,并表明中和性质和对靶标的亲和力至少部分归因于 CDR-H2 环与抗原相互作用的差异。此外,用三个 Fab 对 N-HR 三聚体的复合物进行建模表明,CDR-H2 环可能参与相邻抗体分子之间的紧密分子间接触,并且这种接触可能取决于结合的 CDR-H2 环的构象,该构象由其与抗原的相互作用定义,从而阻止 N-HR 三聚体与一个以上抗体分子形成复合物。与使用完全不同的抗体文库和淘选程序衍生的另一种中和单克隆抗体 D5 的 5-螺旋复合物的晶体结构进行比较,揭示了 CDR-H2 环的最佳序列和构象的惊人收敛。
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