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拉沙病毒跨膜结构域的纯化与特性分析

Purification and characterization of the Lassa virus transmembrane domain.

作者信息

Keating Patrick M, Pennington Hallie N, Collins Shane D, Lee Jinwoo

机构信息

Department of Chemistry and Biochemistry, University of Maryland College Park, College Park, MD, 20742, USA.

出版信息

Biochem Biophys Rep. 2022 Dec 18;33:101409. doi: 10.1016/j.bbrep.2022.101409. eCollection 2023 Mar.

Abstract

Lassa virus (LASV) is the most prevalent arenavirus afflicting humans and has high potential to become a threat to global public health. The transmembrane domain (TM) of the LASV glycoprotein complex forms critical interactions with the LASV stable signal peptide that are important for the maturation and fusion activity of the virus. A further study of the structure-based molecular mechanisms is required to understand the role of the TM in the lifecycle of LASV in greater detail. However, it is challenging to obtain the TM in high quantity and purity due to its hydrophobic nature which results in solubility issues that makes it prone to aggregation in typical buffer systems. Here, we designed a purification and detergent screen protocol for the highly insoluble TM to enhance the yield and purity for structural studies. Based on the detergents tested, the TM had the highest incorporation in LMPG. Circular dichroism (CD) and nuclear magnetic resonance (NMR) spectroscopy were utilized to confirm the best detergent system for structural studies. Through CD spectroscopy, we were able to characterize the secondary structure of the TM as largely alpha-helical, while NMR spectroscopy showed a well-structured and stable TM in LMPG. From these results, LMPG was determined to be the optimal detergent for further structural studies.

摘要

拉沙病毒(LASV)是感染人类的最普遍的沙粒病毒,极有可能成为全球公共卫生的一大威胁。拉沙病毒糖蛋白复合体的跨膜结构域(TM)与拉沙病毒稳定信号肽形成关键相互作用,这对病毒的成熟和融合活性至关重要。需要进一步研究基于结构的分子机制,以更详细地了解TM在拉沙病毒生命周期中的作用。然而,由于其疏水性,难以大量且纯质地获得TM,这会导致溶解性问题,使其在典型缓冲系统中易于聚集。在此,我们为高度不溶性的TM设计了一种纯化和去污剂筛选方案,以提高用于结构研究的产量和纯度。基于所测试的去污剂,TM在月桂酰麦芽糖苷(LMPG)中的掺入率最高。利用圆二色性(CD)和核磁共振(NMR)光谱来确定用于结构研究的最佳去污剂系统。通过CD光谱,我们能够将TM的二级结构表征为主要是α螺旋,而NMR光谱显示在LMPG中TM结构良好且稳定。根据这些结果,确定LMPG是用于进一步结构研究的最佳去污剂。

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