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利用展示血凝素-神经氨酸酶的纳米颗粒揭示副粘病毒-受体相互作用的动力学。

Unraveling dynamics of paramyxovirus-receptor interactions using nanoparticles displaying hemagglutinin-neuraminidase.

机构信息

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

Department Chemical Biology and Drug Discovery, Utrecht Institute for Pharmaceutical Sciences and Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, The Netherlands.

出版信息

PLoS Pathog. 2024 Jul 25;20(7):e1012371. doi: 10.1371/journal.ppat.1012371. eCollection 2024 Jul.

Abstract

Sialoglycan-binding enveloped viruses often possess receptor-destroying activity to avoid being immobilized by non-functional decoy receptors. Sialic acid (Sia)-binding paramyxoviruses contain a hemagglutinin-neuraminidase (HN) protein that possesses both Sia-binding and -cleavage activities. The multivalent, dynamic receptor interactions of paramyxovirus particles provide virion motility and are a key determinant of host tropism. However, such multivalent interactions have not been exhaustively analyzed, because such studies are complicated by the low affinity of the individual interactions and the requirement of high titer virus stocks. Moreover, the dynamics of multivalent particle-receptor interactions are difficult to predict from Michaelis-Menten enzyme kinetics. Therefore, we here developed Ni-NTA nanoparticles that multivalently display recombinant soluble HN tetramers via their His tags (HN-NPs). Applying this HN-NP platform to Newcastle disease virus (NDV), we investigated using biolayer interferometry (BLI) the role of important HN residues in receptor-interactions and analyzed long-range effects between the catalytic site and the second Sia binding site (2SBS). The HN-NP system was also applicable to other paramyxoviruses. Comparative analysis of HN-NPs revealed and confirmed differences in dynamic receptor-interactions between type 1 human and murine parainfluenza viruses as well as of lab-adapted and clinical isolates of human parainfluenza virus type 3, which are likely to contribute to differences in tropism of these viruses. We propose this novel platform to be applicable to elucidate the dynamics of multivalent-receptor interactions important for host tropism and pathogenesis, particularly for difficult to grow sialoglycan-binding (paramyxo)viruses.

摘要

唾液酸结合包膜病毒通常具有受体破坏活性,以避免被非功能性诱饵受体固定。唾液酸结合副粘病毒包含具有唾液酸结合和裂解活性的血凝素神经氨酸酶(HN)蛋白。副粘病毒颗粒的多价、动态受体相互作用提供了病毒粒子的运动性,是宿主嗜性的关键决定因素。然而,这种多价相互作用尚未被详尽分析,因为这些研究受到个体相互作用的低亲和力和高滴度病毒库存的要求的限制。此外,多价粒子-受体相互作用的动力学很难根据米氏酶动力学进行预测。因此,我们在这里开发了 Ni-NTA 纳米颗粒,通过其 His 标签(HN-NP)多价展示重组可溶性 HN 四聚体。应用该 HN-NP 平台研究新城疫病毒(NDV),我们通过生物层干涉法(BLI)研究了 HN 中的重要残基在受体相互作用中的作用,并分析了催化位点和第二个唾液酸结合位点(2SBS)之间的远程相互作用。HN-NP 系统也适用于其他副粘病毒。HN-NP 的比较分析揭示并证实了 1 型人和鼠副流感病毒以及人副流感病毒 3 型的实验室适应株和临床分离株之间的动态受体相互作用的差异,这可能导致这些病毒的嗜性差异。我们建议该新型平台可用于阐明对宿主嗜性和发病机制重要的多价受体相互作用的动力学,特别是对于难以生长的唾液酸结合(副粘)病毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84bd/11302929/ba5b8992cecd/ppat.1012371.g001.jpg

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