Evidence that the SARS-CoV-2 S protein undergoes a conformational change at the Golgi complex that leads to the formation of virus neutralising antibody binding epitopes in the S1 protein subunit

IF 2.8 3区 医学 Q3 VIROLOGY Virology Pub Date : 2024-07-23 DOI:10.1016/j.virol.2024.110187
Yanjun Wu , Soak Kuan Lai , Conrad En-Zuo Chan , Boon Huan Tan , Richard J. Sugrue
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Abstract

Recombinant SARS-CoV-2 S protein expression was examined in Vero cells by imaging using the human monoclonal antibody panel (PD4, PD5, sc23, and sc29). The PD4 and sc29 antibodies recognised conformational specific epitopes in the S2 protein subunit at the Endoplasmic reticulum and Golgi complex. While PD5 and sc23 detected conformationally specific epitopes in the S1 protein subunit at the Golgi complex, only PD5 recognised the receptor binding domain (RBD). A comparison of the staining patterns of PD5 with non-conformationally specific antibodies that recognises the S1 subunit and RBD suggested the PD5 recognised a conformational structure within the S1 protein subunit. Our data suggests the antibody binding epitopes recognised by the human monoclonal antibodies formed at different locations in the secretory pathway during S protein transport, but a conformational change in the S1 protein subunit at the Golgi complex formed antibody binding epitopes that are recognised by virus neutralising antibodies.

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有证据表明,SARS-CoV-2 S 蛋白在高尔基复合体中发生构象变化,导致在 S1 蛋白亚基中形成病毒中和抗体结合表位。
使用人类单克隆抗体(PD4、PD5、sc23 和 sc29)在 Vero 细胞中成像,检测重组 SARS-CoV-2 S 蛋白的表达。PD4 和 sc29 抗体可识别内质网和高尔基复合体中 S2 蛋白亚基的构象特异性表位。PD5 和 sc23 检测到高尔基复合体中 S1 蛋白亚基的构象特异性表位,只有 PD5 能识别受体结合域(RBD)。PD5 与识别 S1 亚基和 RBD 的非构象特异性抗体的染色模式比较表明,PD5 识别的是 S1 蛋白亚基内的构象结构。我们的数据表明,人类单克隆抗体识别的抗体结合表位形成于 S 蛋白转运过程中分泌途径的不同位置,但 S1 蛋白亚基在高尔基复合体中的构象变化形成了病毒中和抗体识别的抗体结合表位。
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来源期刊
Virology
Virology 医学-病毒学
CiteScore
6.00
自引率
0.00%
发文量
157
审稿时长
50 days
期刊介绍: The journal features articles on virus replication, virus-host biology, viral pathogenesis, immunity to viruses, virus structure, and virus evolution and ecology. We aim to publish papers that provide advances to the understanding of virus biology.
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