首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Global Shape and Ligand Binding Efficiency of the HIV-1-neutralizing Antibodies Differ from Those of Antibodies That Cannot Neutralize HIV-1
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Global Shape and Ligand Binding Efficiency of the HIV-1-neutralizing Antibodies Differ from Those of Antibodies That Cannot Neutralize HIV-1

机译:HIV-1中和抗体的整体形状和配体结合效率与无法中和HIV-1的抗体不同

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摘要

Asymmetric disposition of Fab arms in the structures solved for the broadly neutralizing monoclonal antibody (nmAb) IgG1 b12 raised the question of whether the unusual shape observed for b12 is common for all IgG1 mAbs or if there is a difference in the overall shape of nmAbs versus non-nmAbs. We compared small angle x-ray scattering (SAXS) data-based models and limited proteolysis profiles of some IgG1 mAbs known to be having and lacking HIV-1 neutralizing potency. In non-nmAbs, the Fab arms were found to be symmetrically disposed in space relative to central Fc, but in most nmAbs, the Fab arms were asymmetrically disposed, as seen for IgG1 b12. The only exceptions were 2G12 and 4E10, where both Fab arms were closed above Fc, suggesting some Fab-Fc and/or Fab-Fab interaction in the nmAbs that constrained extension of the Fab-Fc linker. Interestingly, these observations were correlated with differential proteolysis profiles of the mAbs by papain. Under conditions when papain could cut both Fab arms of non-nmAbs, only one Fab arm could be removed from neutralizing ones (except for 2G12 and 4E10). Chromatography and small angle x-ray scattering results of papain-digested products revealed that 1) the Fab-Fc or Fab-Fab interactions in unliganded mAbs are retained in digested products, and 2) whereas anti-gp120 non-nmAbs could bind two gp120 molecules, nmAbs could bind only one gp120. Additional experiments showed that except for 2G12 and 4E10, unopen shapes of nmAbs remain uninfluenced by ionic strength but can be reversibly opened by low pH of buffer accompanied by loss of ligand binding ability.
机译:为广泛中和的单克隆抗体(nmAb)IgG1 b12解决的结构中Fab臂的不对称布置提出了一个问题,即观察到的b12异常形状是否对所有IgG1 mAb都是通用的,或者nmAb与非nmAb。我们比较了基于小角度X射线散射(SAXS)数据的模型和一些已知具有和缺乏HIV-1中和力的IgG1 mAb的有限蛋白水解谱。在非nmAb中,发现Fab臂相对于中央Fc在空间上对称放置,但在大多数nmAb中,如IgG1 b12所示,Fab臂不对称放置。唯一的例外是2G12和4E10,其中两个Fab臂均在Fc上方闭合,表明nmAb中存在一些Fab-Fc和/或Fab-Fab相互作用,从而限制了Fab-Fc连接子的延伸。有趣的是,这些观察结果与木瓜蛋白酶对mAbs的不同蛋白水解谱有关。在木瓜蛋白酶可以切割非nmAb的两个Fab臂的条件下,只有一个Fab臂可以从中和臂中除去(2G12和4E10除外)。木瓜蛋白酶消化的产物的色谱和小角度X射线散射结果表明:1)未配体mAb中的Fab-Fc或Fab-Fab相互作用保留在消化的产物中; 2)抗gp120的非nmAb可以结合两个gp120在分子中,nmAb只能结合一个gp120。其他实验表明,除了2G12和4E10外,nmAb的未打开形状不受离子强度的影响,但可通过缓冲液的低pH值伴随配体结合能力的降低而可逆打开。

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