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一种中和含L452R突变的新冠病毒奥密克戎变种的人源单克隆抗体。

A human monoclonal antibody neutralizing SARS-CoV-2 Omicron variants containing the L452R mutation.

作者信息

Stein Saskia C, Hansen Guido, Ssebyatika George, Ströh Luisa J, Ochulor Okechukwu, Herold Elisabeth, Schwarzloh Britta, Mutschall Doris, Zischke Jasmin, Cordes Anne K, Schneider Talia, Hinrichs Imke, Blasczyk Rainer, Kleine-Weber Hannah, Hoffmann Markus, Klein Florian, Kaiser Franziska K, Gonzalez-Hernandez Mariana, Armando Federico, Ciurkiewicz Malgorzata, Beythien Georg, Pöhlmann Stefan, Baumgärtner Wolfgang, Osterhaus Albert, Schulz Thomas F, Krey Thomas

机构信息

Institute of Virology, Hannover Medical School, Hannover, Germany.

Institute of Biochemistry, Center of Structural and Cell Biology in Medicine, University of Lübeck, Lübeck, Germany.

出版信息

J Virol. 2024 Dec 17;98(12):e0122324. doi: 10.1128/jvi.01223-24. Epub 2024 Nov 4.

Abstract

The effectiveness of SARS-CoV-2 therapeutic antibodies targeting the spike (S) receptor-binding domain (RBD) has been hampered by the emergence of variants of concern (VOCs), which have acquired mutations to escape neutralizing antibodies (nAbs). These mutations are not evenly distributed on the RBD surface but cluster on several distinct surfaces, suggesting an influence of the targeted epitope on the capacity to neutralize a broad range of VOCs. Here, we identified a potent nAb from convalescent patients targeting the receptor-binding domain of a broad range of SARS-CoV-2 VOCs. Except for the Lambda and BA.2.86 variants, this nAb efficiently inhibited the entry of most tested VOCs, including Omicron subvariants BA.1, BA.2, XBB.1.5, and EG.5.1 and to a limited extent also BA.4/5, BA.4.6, and BQ.1.1. It bound recombinant S protein with picomolar affinity, reduced the viral load in the lung of infected hamsters, and prevented the severe lung pathology typical for SARS-CoV-2 infections. An X-ray structure of the nAb-RBD complex revealed an epitope that does not fall into any of the conventional classes and provided insights into its broad neutralization properties. Our findings highlight a conserved epitope within the SARS-CoV-2 RBD that should be preferably targeted by therapeutic antibodies and inform rational vaccine development.IMPORTANCETherapeutic antibodies are effective in preventing severe disease from SARS-CoV-2 infection and constitute an important option in pandemic preparedness, but mutations within the S protein of virus variants (e.g., a mutation of L452) confer resistance to many of such antibodies. Here, we identify a human antibody targeting the S protein receptor-binding domain (RBD) with an elevated escape barrier and characterize its interaction with the RBD functionally and structurally at the atomic level. A direct comparison with reported antibodies targeting the same epitope illustrates important differences in the interface, providing insights into the breadth of antibody binding. These findings highlight the relevance of an extended neutralization profiling in combination with biochemical and structural characterization of the antibody-RBD interaction for the selection of future therapeutic antibodies, which may accelerate the control of potential future pandemics.

摘要

针对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)刺突(S)蛋白受体结合域(RBD)的治疗性抗体的有效性受到关注变体(VOCs)出现的阻碍,这些变体发生了突变以逃避中和抗体(nAbs)。这些突变并非均匀分布在RBD表面,而是聚集在几个不同的表面上,这表明靶向表位对中和广泛VOCs的能力有影响。在这里,我们从康复患者中鉴定出一种强效nAb,它靶向多种SARS-CoV-2 VOCs的受体结合域。除了拉姆达和BA.2.86变体,这种nAb有效抑制了大多数测试VOCs的进入,包括奥密克戎亚变体BA.1、BA.2、XBB.1.5和EG.5.1,对BA.4/5、BA.4.6和BQ.1.1也有一定程度的抑制。它以皮摩尔亲和力结合重组S蛋白,降低感染仓鼠肺部的病毒载量,并预防SARS-CoV-2感染典型的严重肺部病理变化。nAb-RBD复合物的X射线结构揭示了一个不属于任何传统类别的表位,并为其广泛的中和特性提供了见解。我们的发现突出了SARS-CoV-2 RBD内一个保守的表位,治疗性抗体应优先靶向该表位,并为合理的疫苗开发提供信息。重要性治疗性抗体可有效预防SARS-CoV-2感染导致的严重疾病,是大流行防范的重要选择,但病毒变体S蛋白内的突变(如L452突变)使许多此类抗体产生耐药性。在这里,我们鉴定出一种靶向S蛋白受体结合域(RBD)的人源抗体,其逃逸屏障升高,并在原子水平上从功能和结构上表征了它与RBD的相互作用。与报道的靶向相同表位的抗体进行直接比较,揭示了界面上的重要差异,为抗体结合的广度提供了见解。这些发现突出了扩展中和分析与抗体-RBD相互作用的生化和结构表征相结合对于选择未来治疗性抗体的相关性,这可能加速对未来潜在大流行的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7558/11650997/c1952b820eaf/jvi.01223-24.f001.jpg

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