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新冠病毒 Spike 蛋白在封闭状态下稳定诱导强烈的中和反应。

SARS-CoV-2 Spike Protein Stabilized in the Closed State Induces Potent Neutralizing Responses.

机构信息

Laboratory of Viral Zoonotics, Department of Veterinary Medicine, University of Cambridge, Cambridge, United Kingdom.

Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.

出版信息

J Virol. 2021 Jul 12;95(15):e0020321. doi: 10.1128/JVI.00203-21.

Abstract

The majority of SARS-CoV-2 vaccines in use or advanced development are based on the viral spike protein (S) as their immunogen. S is present on virions as prefusion trimers in which the receptor binding domain (RBD) is stochastically open or closed. Neutralizing antibodies have been described against both open and closed conformations. The long-term success of vaccination strategies depends upon inducing antibodies that provide long-lasting broad immunity against evolving SARS-CoV-2 strains. Here, we have assessed the results of immunization in a mouse model using an S protein trimer stabilized in the closed state to prevent full exposure of the receptor binding site and therefore interaction with the receptor. We compared this with other modified S protein constructs, including representatives used in current vaccines. We found that all trimeric S proteins induced a T cell response and long-lived, strongly neutralizing antibody responses against 2019 SARS-CoV-2 and variants of concern P.1 and B.1.351. Notably, the protein binding properties of sera induced by the closed spike differed from those induced by standard S protein constructs. Closed S proteins induced more potent neutralizing responses than expected based on the degree to which they inhibit interactions between the RBD and ACE2. These observations suggest that closed spikes recruit different, but equally potent, immune responses than open spikes and that this is likely to include neutralizing antibodies against conformational epitopes present in the closed conformation. We suggest that closed spikes, together with their improved stability and storage properties, may be a valuable component of refined, next-generation vaccines. Vaccines in use against SARS-CoV-2 induce immune responses against the spike protein. There is intense interest in whether the antibody response induced by vaccines will be robust against new variants, as well as in next-generation vaccines for use in previously infected or immunized individuals. We assessed the use as an immunogen of a spike protein engineered to be conformationally stabilized in the closed state where the receptor binding site is occluded. Despite occlusion of the receptor binding site, the spike induces potently neutralizing sera against multiple SARS-CoV-2 variants. Antibodies are raised against a different pattern of epitopes to those induced by other spike constructs, preferring conformational epitopes present in the closed conformation. Closed spikes, or mRNA vaccines based on their sequence, can be a valuable component of next-generation vaccines.

摘要

目前使用或处于研发后期的大多数 SARS-CoV-2 疫苗都以病毒刺突蛋白(S)作为免疫原。S 以预融合三聚体的形式存在于病毒粒子上,其中受体结合域(RBD)随机开放或关闭。已经描述了针对开放和关闭构象的中和抗体。疫苗接种策略的长期成功取决于诱导能够提供针对不断进化的 SARS-CoV-2 株的长期广泛免疫的抗体。在这里,我们使用稳定在关闭状态的 S 蛋白三聚体在小鼠模型中评估了免疫接种的结果,以防止受体结合位点的完全暴露,从而阻止与受体的相互作用。我们将其与其他修饰的 S 蛋白结构进行了比较,包括当前疫苗中使用的代表。我们发现,所有三聚体 S 蛋白都诱导了 T 细胞反应和针对 2019 年 SARS-CoV-2 和关注的 P.1 和 B.1.351 变体的长效、强烈中和抗体反应。值得注意的是,由封闭刺突诱导的血清的蛋白结合特性与由标准 S 蛋白结构诱导的特性不同。封闭 S 蛋白诱导的中和反应比基于它们抑制 RBD 和 ACE2 之间相互作用的程度所预期的更有效。这些观察结果表明,封闭的刺突比开放的刺突募集不同但同样有效的免疫反应,并且这可能包括针对封闭构象中存在的构象表位的中和抗体。我们建议,封闭的刺突及其改善的稳定性和储存特性可能是改进的下一代疫苗的有价值组成部分。 目前用于对抗 SARS-CoV-2 的疫苗会诱导针对刺突蛋白的免疫反应。人们强烈关注疫苗诱导的抗体反应是否对新变体具有强大的抵抗力,以及针对以前感染或免疫的个体使用的下一代疫苗。我们评估了一种经过工程设计以在封闭状态下构象稳定的刺突蛋白作为免疫原的用途,在这种状态下,受体结合位点被封闭。尽管受体结合位点被封闭,刺突仍能诱导针对多种 SARS-CoV-2 变体的强效中和血清。针对与其他刺突结构诱导的不同表位模式产生抗体,更倾向于封闭构象中存在的构象表位。封闭的刺突或基于其序列的 mRNA 疫苗可以成为下一代疫苗的有价值组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00c3/8274612/2a7cf1fbf424/jvi.00203-21-f0001.jpg

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