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黄病毒属寨卡 NS4A 蛋白在脂质体和温和去污剂中形成大的寡聚物。

Flavivirus Zika NS4A protein forms large oligomers in liposomes and in mild detergent.

机构信息

School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore, 637551, Singapore.

出版信息

Sci Rep. 2024 May 31;14(1):12533. doi: 10.1038/s41598-024-63407-y.

Abstract

In flaviviruses such as Dengue or Zika, non-structural (NS) NS4A protein forms homo-oligomers, participates in membrane remodelling and is critical for virulence. In both viruses, mature NS4A has the same length and three predicted hydrophobic domains. The oligomers formed by Dengue NS4A are reported to be small (n = 2, 3), based on denaturing SDS gels, but no high-resolution structure of a flavivirus NS4A protein is available, and the size of the oligomer in lipid membranes is not known. Herein we show that crosslinking Zika NS4A protein in lipid membranes results in oligomers at least up to hexamers. Further, sedimentation velocity shows that NS4A in mild detergent C14-betaine appears to be in fast equilibrium between at least two species, where one is smaller, and the other larger, than a trimer or a tetramer. Consistently, sedimentation equilibrium data was best fitted to a model involving an equilibrium between dimers (n = 2) and hexamers (n = 6). Overall, the large, at least hexameric, oligomers obtained herein in liposomes and in mild detergent are more likely to represent the forms of NS4A present in cell membranes.

摘要

在登革热或寨卡等黄病毒中,非结构 (NS) NS4A 蛋白形成同源寡聚物,参与膜重塑,对毒力至关重要。在这两种病毒中,成熟的 NS4A 具有相同的长度和三个预测的疏水区。基于变性 SDS 凝胶,报告称登革热 NS4A 形成的寡聚物较小(n = 2,3),但尚无黄病毒 NS4A 蛋白的高分辨率结构,也不知道脂质膜中寡聚物的大小。本文中,我们表明在脂质膜中交联寨卡 NS4A 蛋白会导致至少六聚体的寡聚物。此外,沉降速度表明,在温和去污剂 C14-甜菜碱中,NS4A 似乎在至少两种物质之间处于快速平衡状态,其中一种比三聚体或四聚体小,另一种比三聚体或四聚体大。一致地,沉降平衡数据最好拟合涉及二聚体(n = 2)和六聚体(n = 6)之间平衡的模型。总体而言,本文在脂质体和温和去污剂中获得的大的、至少六聚体的寡聚物更可能代表存在于细胞膜中的 NS4A 形式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a17/11143224/6521ad418c1d/41598_2024_63407_Fig1_HTML.jpg

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