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疫苗诱导的小鼠抗体 WS6 通过识别一个脆弱性的螺旋茎超位点来中和多种β 冠状病毒。

Vaccine-elicited murine antibody WS6 neutralizes diverse beta-coronaviruses by recognizing a helical stem supersite of vulnerability.

机构信息

Vaccine Research Center, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

Department of Biology, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

Structure. 2022 Sep 1;30(9):1233-1244.e7. doi: 10.1016/j.str.2022.06.004. Epub 2022 Jul 15.

Abstract

Immunization with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike elicits diverse antibodies, but it is unclear if any of the antibodies can neutralize broadly against other beta-coronaviruses. Here, we report antibody WS6 from a mouse immunized with mRNA encoding the SARS-CoV-2 spike. WS6 bound diverse beta-coronavirus spikes and neutralized SARS-CoV-2 variants, SARS-CoV, and related sarbecoviruses. Epitope mapping revealed WS6 to target a region in the S2 subunit, which was conserved among SARS-CoV-2, Middle East respiratory syndrome (MERS)-CoV, and hCoV-OC43. The crystal structure at 2 Å resolution of WS6 revealed recognition to center on a conserved S2 helix, which was occluded in both pre- and post-fusion spike conformations. Structural and neutralization analyses indicated WS6 to neutralize by inhibiting fusion and post-viral attachment. Comparison of WS6 with other recently identified antibodies that broadly neutralize beta-coronaviruses indicated a stem-helical supersite-centered on hydrophobic residues Phe1148, Leu1152, Tyr1155, and Phe1156-to be a promising target for vaccine design.

摘要

用严重急性呼吸综合征冠状病毒 2 (SARS-CoV-2) 刺突蛋白免疫可引发多种抗体,但尚不清楚这些抗体中是否有任何一种能对其他β冠状病毒产生广泛中和作用。在这里,我们报告了一种用编码 SARS-CoV-2 刺突的 mRNA 免疫的小鼠产生的抗体 WS6。WS6 结合了多种β冠状病毒的刺突并中和了 SARS-CoV-2 变体、SARS-CoV 和相关的sarbecoviruses。表位作图显示 WS6 靶向 S2 亚基中的一个区域,该区域在 SARS-CoV-2、中东呼吸综合征 (MERS)-CoV 和 hCoV-OC43 中保守。2 Å 分辨率的 WS6 晶体结构揭示了识别的中心是一个保守的 S2 螺旋,该螺旋在融合前和融合后刺突构象中都被封闭。结构和中和分析表明,WS6 通过抑制融合和病毒后附着来中和。与其他最近鉴定的能广泛中和β冠状病毒的抗体进行比较表明,以疏水性残基 Phe1148、Leu1152、Tyr1155 和 Phe1156 为中心的茎螺旋超位点是疫苗设计的一个有希望的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcfa/9284671/779413c292f8/fx1_lrg.jpg

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