首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Thermodynamic Analysis of the Binding of 2F5 (Fab and Immunoglobulin G Forms) to Its gp41 Epitope Reveals a Strong Influence of the Immunoglobulin Fc Region on Affinity
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Thermodynamic Analysis of the Binding of 2F5 (Fab and Immunoglobulin G Forms) to Its gp41 Epitope Reveals a Strong Influence of the Immunoglobulin Fc Region on Affinity

机译:2F5(Fab和免疫球蛋白G形式)与其gp41表位结合的热力学分析揭示了免疫球蛋白Fc区对亲和力的强烈影响。

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摘要

Immunotherapies and vaccines based on the induction of broadly neutralizing monoclonal antibodies (bNAbs) have become outstanding strategies against HIV-1. Diverse bNAbs recognizing different regions of the HIV-1 envelope have been identified and extensively studied. However, there is little information about the thermodynamics of binding of these bNAbs and their epitopes. We used isothermal titration calorimetry to characterize thermodynamically the interactions between bNAb 2F5 (in both the IgG and Fab forms) and its functional and core epitope peptides. We found that these interactions are enthalpically driven and opposed by a negative entropy change. The highest affinity was found for 2F5 IgG for its functional epitope, indicating that additional interactions involving residues flanking the core epitope contribute strongly to higher affinity. In addition, the strong influence of the Fc region on the binding affinity suggests long-range allosteric effects within IgG. Our results provide useful information for developing new therapeutics against HIV-1 and, in a broader scope, contribute to a better understanding of antigen-antibody recognition.
机译:基于诱导广泛中和的单克隆抗体(bNAb)的免疫疗法和疫苗已成为针对HIV-1的杰出策略。识别并广泛研究了识别HIV-1包膜不同区域的不同bNAb。然而,关于这些bNAb及其表位结合的热力学的信息很少。我们使用等温滴定量热法来表征bNAb 2F5(以IgG和Fab形式)与其功能性和核心表位肽之间的相互作用。我们发现这些相互作用是由熵驱动的,并且受到负熵变化的反对。发现对2F5 IgG的功能性表位有最高的亲和力,表明涉及核心表位侧翼的残基的其他相互作用强烈地有助于更高的亲和力。另外,Fc区对结合亲和力的强烈影响表明IgG内的远距离变构作用。我们的结果为开发针对HIV-1的新疗法提供了有用的信息,并且在更广泛的范围内,有助于更好地理解抗原抗体。

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