首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Isotype modulates epitope specificity affinity and antiviral activities of anti–HIV-1 human broadly neutralizing 2F5 antibody
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From the Cover: Isotype modulates epitope specificity affinity and antiviral activities of anti–HIV-1 human broadly neutralizing 2F5 antibody

机译:从封面开始:同种型可调节抗HIV-1人类广泛中和的2F5抗体的表位特异性亲和力和抗病毒活性

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摘要

The constant heavy chain (CH1) domain affects antibody affinity and fine specificity, challenging the paradigm that only variable regions contribute to antigen binding. To investigate the role of the CH1 domain, we constructed IgA2 from the broadly neutralizing anti–HIV-1 2F5 IgG1, and compared 2F5 IgA2 and IgG binding affinity and functional activities. We found that 2F5 IgA2 bound to the gp41 membrane proximal external region with higher affinity than IgG1. Functionally, compared with IgG1, 2F5 IgA2 more efficiently blocked HIV-1 transcytosis across epithelial cells and CD4+ cell infection by R5 HIV-1. The 2F5 IgG1 and IgA2 acted synergistically to fully block HIV-1 transfer from Langerhans to autologous CD4+ T cells and to inhibit CD4+ T-cell infection. Epitope mapping performed by screening a random peptide library and in silico docking modeling suggested that along with the 2F5 IgG canonical ELDKWA epitope on gp41, the IgG1 recognized an additional 3D-conformational epitope on the gp41 C-helix. In contrast, the IgA2 epitope included a unique conformational motif on the gp41 N-helix. Overall, the CH1 region of 2F5 contributes to shape its epitope specificity, antibody affinity, and functional activities. In the context of sexually transmitted infections such as HIV-1/AIDS, raising a mucosal IgA-based vaccine response should complement an IgG-based vaccine response in blocking HIV-1 transmission.
机译:恒定的重链(CH1)域影响抗体的亲和力和优良的特异性,挑战仅可变区有助于抗原结合的范式。为了研究CH1结构域的作用,我们从广泛中和的抗HIV-1 2F5 IgG1构建了IgA2,并比较了2F5 IgA2和IgG的结合亲和力和功能活性。我们发现2F5 IgA2以比IgG1高的亲和力结合到gp41膜近端外部区域。在功能上,与IgG1相比,2F5 IgA2更有效地阻止了HIV-1跨上皮细胞的转吞作用和R5 HIV-1感染CD4 + 细胞。 2F5 IgG1和IgA2具有协同作用,可完全阻止HIV-1从Langerhans转移至自体CD4 + T细胞并抑制CD4 + T细胞感染。通过筛选随机肽库和计算机对接模型进行的表位作图表明,IgG1与gp41上的2F5 IgG典型ELDKWA表位一起,识别到gp41 C螺旋上的3D构象性表位。相反,IgA2表位在gp41 N-螺旋上包含独特的构象基序。总体而言,2F5的CH1区域有助于塑造其表位特异性,抗体亲和力和功能活性。在诸如HIV-1 / AIDS之类的性传播感染的情况下,提高基于粘膜IgA的疫苗反应应补充基于IgG的疫苗反应,以阻止HIV-1传播。

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