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首页> 外文期刊>The journal of immunology >Reversion of Somatic Mutations of the Respiratory Syncytial Virus–Specific Human Monoclonal Antibody Fab19 Reveal a Direct Relationship between Association Rate and Neutralizing Potency
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Reversion of Somatic Mutations of the Respiratory Syncytial Virus–Specific Human Monoclonal Antibody Fab19 Reveal a Direct Relationship between Association Rate and Neutralizing Potency

机译:呼吸道合胞病毒的体细胞突变的逆转-特定人类单克隆抗体Fab19揭示缔合率和中和力之间的直接关系。

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The role of affinity in determining neutralizing potency of mAbs directed against viruses is not well understood. We investigated the kinetic, structural, and functional advantage conferred by individual naturally occurring somatic mutations in the Ab H chain V region of Fab19, a well-described neutralizing human mAb directed to respiratory syncytial virus. Comparison of the affinity-matured Ab Fab19 with recombinant Fab19 Abs that were variants containing reverted amino acids from the inferred unmutated ancestor sequence revealed the molecular basis for affinity maturation of this Ab. Enhanced binding was achieved through mutations in the third H chain CDR (HCDR3) that conferred a markedly faster on-rate and a desirable increase in antiviral neutralizing activity. In contrast, most somatic mutations in the HCDR1 and HCDR2 regions did not significantly enhance Ag binding or antiviral activity. We observed a direct relationship between the measured association rate ( K on) for F protein and antiviral activity. Modeling studies of the structure of the Ag–Ab complex suggested the HCDR3 loop interacts with the antigenic site A surface loop of the respiratory syncytial virus F protein, previously shown to contain the epitope for this Ab by experimentation. These studies define a direct relationship of affinity and neutralizing activity for a viral glycoprotein–specific human mAb.
机译:亲和力在确定针对病毒的mAb的中和效力方面的作用尚不清楚。我们研究了由Fab19(一种针对呼吸道合胞病毒的众所周知的中和性人单克隆抗体)的Ab H链V区中的个体天然发生的体细胞突变所赋予的动力学,结构和功能优势。亲和力成熟的Ab Fab19与重组Fab19 Abs的比较,重组Fab19 Abs包含从推断的未突变祖先序列还原的氨基酸的变体,揭示了该Ab亲和力成熟的分子基础。通过第三H链CDR(HCDR3)中的突变实现了增强的结合,这赋予了显着更快的打开速度和所需的抗病毒中和活​​性的增加。相反,HCDR1和HCDR2区中的大多数体细胞突变并没有显着增强Ag结合或抗病毒活性。我们观察到F蛋白的测量缔合率(K on)与抗病毒活性之间存在直接关系。对Ag-Ab复合物结构的模型研究表明,HCDR3环与呼吸道合胞病毒F蛋白的抗原位点A表面环相互作用,该环先前已通过实验证明含有该Ab的表位。这些研究确定了病毒糖蛋白特异性人类单克隆抗体亲和力和中和活性的直接关系。

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