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中和抗体揭示了猪德尔塔冠状病毒刺突蛋白中的隐蔽弱点和结构域间串扰。

Neutralizing antibodies reveal cryptic vulnerabilities and interdomain crosstalk in the porcine deltacoronavirus spike protein.

机构信息

Virology Section, Infectious Diseases and Immunology Division, Department of Biomolecular Health Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands.

Department of Cell Biology, Erasmus Medical Center, Rotterdam, The Netherlands.

出版信息

Nat Commun. 2024 Jun 22;15(1):5330. doi: 10.1038/s41467-024-49693-0.

Abstract

Porcine deltacoronavirus (PDCoV) is an emerging enteric pathogen that has recently been detected in humans. Despite this zoonotic concern, the antigenic structure of PDCoV remains unknown. The virus relies on its spike (S) protein for cell entry, making it a prime target for neutralizing antibodies. Here, we generate and characterize a set of neutralizing antibodies targeting the S protein, shedding light on PDCoV S interdomain crosstalk and its vulnerable sites. Among the four identified antibodies, one targets the S1A domain, causing local and long-range conformational changes, resulting in partial exposure of the S1B domain. The other antibodies bind the S1B domain, disrupting binding to aminopeptidase N (APN), the entry receptor for PDCoV. Notably, the epitopes of these S1B-targeting antibodies are concealed in the prefusion S trimer conformation, highlighting the necessity for conformational changes for effective antibody binding. The binding footprint of one S1B binder entirely overlaps with APN-interacting residues and thus targets a highly conserved epitope. These findings provide structural insights into the humoral immune response against the PDCoV S protein, potentially guiding vaccine and therapeutic development for this zoonotic pathogen.

摘要

猪德尔塔冠状病毒(PDCoV)是一种新兴的肠道病原体,最近在人类中被检测到。尽管存在这种人畜共患病的担忧,但 PDCoV 的抗原结构仍然未知。该病毒依靠其 Spike(S)蛋白进入细胞,使其成为中和抗体的主要目标。在这里,我们生成并表征了一组针对 S 蛋白的中和抗体,揭示了 PDCoV S 结构域间的相互作用及其脆弱位点。在鉴定出的四种抗体中,有一种针对 S1A 结构域,引起局部和长程构象变化,导致 S1B 结构域部分暴露。其他抗体结合 S1B 结构域,破坏与 PDCoV 的进入受体氨肽酶 N(APN)的结合。值得注意的是,这些针对 S1B 的抗体的表位隐藏在预融合 S 三聚体构象中,这突出了有效抗体结合所需的构象变化。一种 S1B 结合物的结合足迹完全与 APN 相互作用残基重叠,因此针对一个高度保守的表位。这些发现为针对 PDCoV S 蛋白的体液免疫反应提供了结构见解,可能为这种人畜共患病病原体的疫苗和治疗开发提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51f7/11193727/80946e8e6000/41467_2024_49693_Fig1_HTML.jpg

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