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通过核磁共振研究丙型肝炎病毒E1糖蛋白跨膜结构域的结构

Architecture of the hepatitis C virus E1 glycoprotein transmembrane domain studied by NMR.

作者信息

Zazrin Hadas, Shaked Hadassa, Chill Jordan H

机构信息

Department of Chemistry, Bar Ilan University, Ramat Gan 52900, Israel.

Department of Chemistry, Bar Ilan University, Ramat Gan 52900, Israel.

出版信息

Biochim Biophys Acta. 2014 Mar;1838(3):784-92. doi: 10.1016/j.bbamem.2013.10.021. Epub 2013 Nov 2.

DOI:10.1016/j.bbamem.2013.10.021
PMID:24192053
Abstract

Oligomerization of hepatitis C viral envelope proteins E1 and E2 is essential to virus fusion and assembly. Although interactions within the transmembrane (TM) domains of these glycoproteins have proven contributions to the E1/E2 heterodimerization process and consequent infectivity, there is little structural information on this entry mechanism. Here, as a first step towards our long-term goal of understanding the interaction between E1 and E2 TM-domains, we have expressed, purified and characterized E1-TM using structural biomolecular NMR methods. An MBP-fusion expression system yielded sufficient quantities of pure E1-TM, which was solubilized in two membrane-mimicking environments, SDS- and LPPG-micelles, affording samples amenable to NMR studies. Triple resonance assignment experiments and relaxation measurements provided information on the secondary structure and global fold of E1-TM in these environments. In SDS micelles E1-TM adopts a helical conformation, with helical stretches at residues 354-363 and 371-379 separated by a more flexible segment of residues 364-370. In LPPG micelles a helical conformation was observed for residues 354-377 with greater flexibility in the 366-367 dyad, suggesting LPPG provides a more native environment for the peptide. Replacement of key positively charged residue K370 with an alanine did not affect the secondary structure of E1-TM but did change the relative positioning within the micelle of the two helices. These results lay the foundation for structure determination of E1-TM and a molecular understanding of how E1-TM flexibility enhances its interaction with E2-TM during heterodimerization and membrane fusion.

摘要

丙型肝炎病毒包膜蛋白E1和E2的寡聚化对于病毒融合和组装至关重要。尽管已证明这些糖蛋白跨膜(TM)结构域内的相互作用对E1/E2异二聚化过程及随之而来的感染性有贡献,但关于这种进入机制的结构信息却很少。在此,作为我们理解E1和E2 TM结构域之间相互作用这一长期目标的第一步,我们使用结构生物分子核磁共振方法对E1-TM进行了表达、纯化和表征。一个MBP融合表达系统产生了足够量的纯E1-TM,其溶解于两种模拟膜的环境中,即SDS和LPPG胶束中,得到了适合核磁共振研究的样品。三重共振归属实验和弛豫测量提供了关于这些环境中E1-TM二级结构和整体折叠的信息。在SDS胶束中,E1-TM呈现螺旋构象,在残基354-363和371-379处有螺旋段,中间由残基364-370的更灵活片段隔开。在LPPG胶束中,观察到残基354-377呈螺旋构象,在366-367二元组处有更大的灵活性,这表明LPPG为该肽提供了更天然的环境。用丙氨酸取代关键的带正电荷残基K370并不影响E1-TM的二级结构,但确实改变了两个螺旋在胶束中的相对位置。这些结果为E1-TM的结构测定以及从分子层面理解E1-TM的灵活性如何在异二聚化和膜融合过程中增强其与E2-TM的相互作用奠定了基础。

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