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Antibody 2G12 recognizes di-mannose equivalently in domain- and nondomain-exchanged forms but only binds the HIV-1 glycan shield if domain exchanged

机译:抗体2G12以结构域和非结构域交换形式等效地识别二甘露糖,但是如果进行结构域交换,则仅结合HIV-1聚糖屏蔽

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摘要

The broadly neutralizing anti-human immunodeficiency virus type 1 (HIV-1) antibody 2G12 targets the high-mannose cluster on the glycan shield of HIV-1. 2G12 has a unique V(H) domain-exchanged structure, with a multivalent binding surface that includes two primary glycan binding sites. The high-mannose cluster is an attractive target for HIV-1 vaccine design, but so far, no carbohydrate immunogen has elicited 2G12-like antibodies. Important questions remain as to how this domain exchange arose in 2G12 and how this unusual event conferred unexpected reactivity against the glycan shield of HIV-1. In order to address these questions, we generated a nondomain-exchanged variant of 2G12 to produce a conventional Y/T-shaped antibody through a single amino acid substitution (2G12 I19R) and showed that, as for the 2G12 wild type (2G12 WT), this antibody is able to recognize the same Manα1,2Man motif on recombinant gp120, Candida albicans, and synthetic glycoconjugates. However, the nondomain-exchanged variant of 2G12 is unable to bind the cluster of mannose moieties on the surface of HIV-1. Crystallographic analysis of 2G12 I19R in complex with Manα1,2Man revealed an adaptable hinge between V(H) and C(H)1 that enables the V(H) and V(L) domains to assemble in such a way that the configuration of the primary binding site and its interaction with disaccharide are remarkably similar in the nondomain-exchanged and domain-exchanged forms. Together with data that suggest that very few substitutions are required for domain exchange, the results suggest potential mechanisms for the evolution of domain-exchanged antibodies and immunization strategies for eliciting such antibodies.
机译:广泛中和的1型抗人类免疫缺陷病毒(HIV-1)抗体2G12靶向HIV-1聚糖屏蔽上的高甘露糖簇。 2G12具有独特的V(H)域交换结构,具有包括两个主要聚糖结合位点的多价结合表面。高甘露糖簇是HIV-1疫苗设计的诱人靶标,但是到目前为止,还没有碳水化合物免疫原引发2G12样抗体。关于此域交换如何在2G12中产生以及此异常事件如何赋予针对HIV-1聚糖屏蔽的意想不到的反应性,仍然存在重要的问题。为了解决这些问题,我们生成了2G12的非结构域交换变体,可通过单个氨基酸取代(2G12 I19R)产生常规的Y / T形抗体,并证明与2G12野生型(2G12 WT)一样,该抗体能够识别重组gp120,白色念珠菌和合成糖缀合物上的相同Manα1,2Man基序。但是,非域交换的2G12变体无法结合HIV-1表面上的甘露糖部分簇。与Manα1,2Man配合使用的2G12 I19R的晶体学分析显示,V(H)和C(H)1之间具有可适应的铰链,该铰链使V(H)和V(L)域能够以如下方式组装:非结构域交换和结构域交换形式的主要结合位点及其与二糖的相互作用非常相似。连同表明域交换所需的取代很少的数据一起,结果表明域交换抗体的进化的潜在机制以及引发此类抗体的免疫策略。

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