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单细胞分析 SARS-CoV-2 与 C 型凝集素受体的结合。

Single-Molecule Analysis of SARS-CoV-2 Binding to C-Type Lectin Receptors.

机构信息

Louvain Institute of Biomolecular Science and Technology, Université Catholique de Louvain, 1348 Louvain-la-Neuve, Belgium.

Walloon Excellence in Life Sciences and Biotechnology (WELBIO), 1300 Wavre, Belgium.

出版信息

Nano Lett. 2023 Feb 22;23(4):1496-1504. doi: 10.1021/acs.nanolett.2c04931. Epub 2023 Feb 9.

Abstract

Despite intense scrutiny throughout the pandemic, development of efficacious drugs against SARS-CoV-2 spread remains hindered. Understanding the underlying mechanisms of viral infection is fundamental for developing novel treatments. While angiotensin converting enzyme 2 (ACE2) is accepted as the key entry receptor of the virus, other infection mechanisms exist. Dendritic cell-specific intercellular adhesion molecule-3 grabbing non-integrin (DC-SIGN) and its counterpart DC-SIGN-related (DC-SIGNR, also known as L-SIGN) have been recognized as possessing functional roles in COVID-19 disease and binding to SARS-CoV-2 has been demonstrated previously with ensemble and qualitative techniques. Here we examine the thermodynamic and kinetic parameters of the ligand-receptor interaction between these C-type lectins and the SARS-CoV-2 S1 protein using force-distance curve-based AFM and biolayer interferometry. We evidence that the S1 receptor binding domain is likely involved in this bond formation. Further, we employed deglycosidases and examined a nonglycosylated S1 variant to confirm the significance of glycosylation in this interaction. We demonstrate that the high affinity interactions observed occur through a mechanism distinct from that of ACE2.

摘要

尽管在整个大流行期间都进行了深入研究,但针对 SARS-CoV-2 传播的有效药物的开发仍然受到阻碍。了解病毒感染的潜在机制对于开发新的治疗方法至关重要。虽然血管紧张素转换酶 2 (ACE2) 被认为是病毒的关键进入受体,但其他感染机制也存在。树突状细胞特异性细胞间黏附分子 3 抓取非整联蛋白 (DC-SIGN)及其对应物 DC-SIGN 相关 (DC-SIGNR,也称为 L-SIGN) 已被认为在 COVID-19 疾病中具有功能作用,并且先前已经使用集合和定性技术证明了与 SARS-CoV-2 的结合。在这里,我们使用基于力距曲线的 AFM 和生物层干涉测量法来检查这些 C 型凝集素与 SARS-CoV-2 S1 蛋白之间配体-受体相互作用的热力学和动力学参数。我们证明 S1 受体结合域可能参与这种键合形成。此外,我们使用去糖基化酶并检查了一种非糖基化的 S1 变体,以确认糖基化在这种相互作用中的重要性。我们证明观察到的高亲和力相互作用是通过一种与 ACE2 不同的机制发生的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca5f/9952423/a032bcd14f4f/nl2c04931_0001.jpg

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