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三聚体预融合狂犬病病毒糖蛋白与两种保护性抗体复合物的结构。

Structure of trimeric pre-fusion rabies virus glycoprotein in complex with two protective antibodies.

机构信息

Jenner Institute, Old Road Campus Research Building, Roosevelt Drive, Oxford OX3 7DQ, UK; Division of Structural Biology, Wellcome Centre for Human Genetics, University of Oxford, Roosevelt Drive, Oxford OX3 7BN, UK.

Jenner Institute, Old Road Campus Research Building, Roosevelt Drive, Oxford OX3 7DQ, UK.

出版信息

Cell Host Microbe. 2022 Sep 14;30(9):1219-1230.e7. doi: 10.1016/j.chom.2022.07.014. Epub 2022 Aug 18.

Abstract

Rabies virus (RABV) causes lethal encephalitis and is responsible for approximately 60,000 deaths per year. As the sole virion-surface protein, the rabies virus glycoprotein (RABV-G) mediates host-cell entry. RABV-G's pre-fusion trimeric conformation displays epitopes bound by protective neutralizing antibodies that can be induced by vaccination or passively administered for post-exposure prophylaxis. We report a 2.8-Å structure of a RABV-G trimer in the pre-fusion conformation, in complex with two neutralizing and protective monoclonal antibodies, 17C7 and 1112-1, that recognize distinct epitopes. One of these antibodies is a licensed prophylactic (17C7, Rabishield), which we show locks the protein in pre-fusion conformation. Targeted mutations can similarly stabilize RABV-G in the pre-fusion conformation, a key step toward structure-guided vaccine design. These data reveal the higher-order architecture of a key therapeutic target and the structural basis of neutralization by antibodies binding two key antigenic sites, and this will facilitate the development of improved vaccines and prophylactic antibodies.

摘要

狂犬病病毒(RABV)可导致致命性脑炎,每年造成约 60000 人死亡。作为唯一的病毒表面蛋白,狂犬病病毒糖蛋白(RABV-G)介导宿主细胞进入。RABV-G 的预融合三聚体构象展示了被保护性中和抗体结合的表位,这些抗体可以通过接种疫苗诱导产生,也可以被动给予进行暴露后预防。我们报告了一个 2.8Å分辨率的 RABV-G 三聚体在预融合构象下的结构,与两种中和且具有保护作用的单克隆抗体 17C7 和 1112-1 复合物,它们识别不同的表位。其中一种抗体是一种已许可的预防性抗体(17C7,Rabishield),它可将该蛋白锁定在预融合构象中。靶向突变也可使 RABV-G 类似地稳定在预融合构象,这是朝着基于结构的疫苗设计迈出的关键一步。这些数据揭示了一个关键治疗靶点的高级结构以及与结合两个关键抗原位点的抗体中和的结构基础,这将有助于开发改良的疫苗和预防性抗体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1164/9605875/96a7b02e67b9/fx1.jpg

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