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通过促进膜相互作用对广泛中和性HIV-1抗体10E8进行功能优化

Functional Optimization of Broadly Neutralizing HIV-1 Antibody 10E8 by Promotion of Membrane Interactions.

作者信息

Rujas Edurne, Leaman Daniel P, Insausti Sara, Ortigosa-Pascual Lei, Zhang Lei, Zwick Michael B, Nieva José L

机构信息

Biofisika Institute (CSIC, UPV/EHU), University of the Basque Country (UPV/EHU), Bilbao, Spain.

Department of Biochemistry and Molecular Biology, University of the Basque Country (UPV/EHU), Bilbao, Spain.

出版信息

J Virol. 2018 Mar 28;92(8). doi: 10.1128/JVI.02249-17. Print 2018 Apr 15.

Abstract

The 10E8 antibody targets a helical epitope in the membrane-proximal external region (MPER) and transmembrane domain (TMD) of the envelope glycoprotein (Env) subunit gp41 and is among the broadest known neutralizing antibodies against HIV-1. Accordingly, this antibody and its mechanism of action valuably inform the design of effective vaccines and immunotherapies. 10E8 exhibits unusual adaptations to attain specific, high-affinity binding to the MPER at the viral membrane interface. Reversing the charge of the basic paratope surface (from net positive to net negative) reportedly lowered its neutralization potency. Here, we hypothesized that by increasing the net positive charge in similar polar surface patches, the neutralization potency of the antibody may be enhanced. We found that an increased positive charge at this paratope surface strengthened an electrostatic interaction between the antibody and lipid bilayers, enabling 10E8 to interact spontaneously with membranes. Notably, the modified 10E8 antibody did not gain any apparent polyreactivity and neutralized virus with a significantly greater potency. Binding analyses indicated that the optimized 10E8 antibody bound with a higher affinity to the epitope peptide anchored in lipid bilayers and to Env spikes on virions. Overall, our data provide a proof of principle for the rational optimization of 10E8 via manipulation of its interaction with the membrane element of its epitope. However, the observation that a similar mutation strategy did not affect the potency of the first-generation anti-MPER antibody 4E10 shows possible limitations of this principle. Altogether, our results emphasize the crucial role played by the viral membrane in the antigenicity of the MPER-TMD of HIV-1. The broadly neutralizing antibody 10E8 blocks infection by nearly all HIV-1 isolates, a capacity which vaccine design seeks to reproduce. Engineered versions of this antibody also represent a promising treatment for HIV infection by passive immunization. Understanding its mechanism of action is therefore important to help in developing effective vaccines and biologics to combat HIV/AIDS. 10E8 engages its helical MPER epitope where the base of the envelope spike submerges into the viral membrane. To enable this interaction, this antibody evolved an unusual property: the ability to interact with the membrane surface. Here, we provide evidence that 10E8 can be made more effective by enhancing its interactions with membranes. Our findings strengthen the idea that to elicit antibodies similar to 10E8, vaccines must reproduce the membrane environment where these antibodies perform their function.

摘要

10E8抗体靶向包膜糖蛋白(Env)亚基gp41的膜近端外部区域(MPER)和跨膜结构域(TMD)中的一个螺旋表位,是已知针对HIV-1的最具广谱中和能力的抗体之一。因此,这种抗体及其作用机制为有效疫苗和免疫疗法的设计提供了有价值的信息。10E8表现出不同寻常的适应性,以在病毒膜界面与MPER实现特异性、高亲和力结合。据报道,将碱性互补决定区表面的电荷反转(从净正电荷变为净负电荷)会降低其中和效力。在此,我们推测,通过增加类似极性表面区域的净正电荷,抗体的中和效力可能会增强。我们发现,该互补决定区表面正电荷的增加增强了抗体与脂质双层之间的静电相互作用,使10E8能够自发地与膜相互作用。值得注意的是,修饰后的10E8抗体没有获得任何明显的多反应性,并且以显著更高的效力中和病毒。结合分析表明,优化后的10E8抗体与锚定在脂质双层中的表位肽以及病毒粒子上的Env刺突具有更高的亲和力。总体而言,我们的数据为通过操纵10E8与表位膜元件的相互作用对其进行合理优化提供了原理证明。然而,类似的突变策略并未影响第一代抗MPER抗体4E10的效力这一观察结果表明了该原理可能存在局限性。总之,我们的结果强调了病毒膜在HIV-1的MPER-TMD抗原性中所起的关键作用。广谱中和抗体10E8可阻断几乎所有HIV-1分离株的感染,疫苗设计旨在重现这种能力。这种抗体的工程化版本通过被动免疫也代表了一种有前景的HIV感染治疗方法。因此,了解其作用机制对于帮助开发对抗HIV/AIDS的有效疫苗和生物制剂很重要。10E8与它的螺旋MPER表位结合,包膜刺突的基部就浸没在这个表位中,进入病毒膜。为了实现这种相互作用,这种抗体进化出一种不同寻常的特性:与膜表面相互作用的能力。在此,我们提供证据表明,通过增强10E8与膜的相互作用可以使其更有效。我们的发现强化了这样一种观点,即要引发类似于10E8的抗体,疫苗必须重现这些抗体发挥功能的膜环境。

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