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酸性pH诱导的蜱传脑炎病毒包膜蛋白的寡聚重排

Oligomeric rearrangement of tick-borne encephalitis virus envelope proteins induced by an acidic pH.

作者信息

Allison S L, Schalich J, Stiasny K, Mandl C W, Kunz C, Heinz F X

机构信息

Institute of Virology, University of Vienna, Austria.

出版信息

J Virol. 1995 Feb;69(2):695-700. doi: 10.1128/JVI.69.2.695-700.1995.

DOI:10.1128/JVI.69.2.695-700.1995
PMID:7529335
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC188630/
Abstract

The flavivirus envelope protein E undergoes irreversible conformational changes at a mildly acidic pH which are believed to be necessary for membrane fusion in endosomes. In this study we used a combination of chemical cross-linking and sedimentation analysis to show that the envelope proteins of the flavivirus tick-borne encephalitis virus also change their oligomeric structure when exposed to a mildly acidic environment. Under neutral or slightly alkaline conditions, protein E on the surface of native virions exists as a homodimer which can be isolated by solubilization with the nonionic detergent Triton X-100. Solubilization with the same detergent after pretreatment at an acidic pH, however, yielded homotrimers rather than homodimers, suggesting that exposure to an acidic pH had induced a simultaneous weakening of dimeric contacts and a strengthening of trimeric ones. The pH threshold for the dimer-to-trimer transition was found to be 6.5. Because the pH dependence of this transition parallels that of previously observed changes in the conformation and hydrophobicity of protein E and that of virus-induced membrane fusion, it appears likely that the mechanism of fusion with endosomal membranes involves a specific rearrangement of the proteins in the viral envelope. Immature virions in which protein E is associated with the uncleaved precursor (prM) of the membrane protein M did not undergo a low-pH-induced rearrangement. This is consistent with a protective role of protein prM for protein E during intracellular transport of immature virions through acidic compartments of the trans-Golgi network.

摘要

黄病毒包膜蛋白E在轻度酸性pH值下会发生不可逆的构象变化,据信这对于内体中的膜融合是必要的。在本研究中,我们结合化学交联和沉降分析表明,蜱传脑炎病毒这一黄病毒的包膜蛋白在暴露于轻度酸性环境时也会改变其寡聚结构。在中性或略碱性条件下,天然病毒粒子表面的蛋白E以同型二聚体形式存在,可通过用非离子去污剂Triton X-100溶解来分离。然而,在酸性pH预处理后用相同的去污剂溶解,得到的是同型三聚体而非同型二聚体,这表明暴露于酸性pH会导致二聚体接触同时减弱和三聚体接触增强。发现二聚体向三聚体转变的pH阈值为6.5。由于这种转变的pH依赖性与先前观察到的蛋白E的构象和疏水性变化以及病毒诱导的膜融合的pH依赖性相似,因此与内体膜融合的机制似乎涉及病毒包膜中蛋白质的特定重排。其中蛋白E与膜蛋白M的未切割前体(prM)相关联的未成熟病毒粒子未发生低pH诱导的重排。这与蛋白prM在未成熟病毒粒子通过反式高尔基体网络的酸性区室进行细胞内运输过程中对蛋白E的保护作用一致。

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