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Role of Transmembrane Domains of Hepatitis B Virus Small Surface Proteins in Subviral-Particle Biogenesis

机译:乙型肝炎病毒小表面蛋白跨膜结构域在亚病毒颗粒生物发生中的作用

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摘要

The hepatitis B virus (HBV) surface proteins not only are incorporated into the virion envelope but in addition form subviral particles (SVP) consisting solely of surface proteins and lipids. Heterologous expression of the small HBV envelope protein S produces secreted spherical SVP 20 nm in diameter, with approximately 100 S molecules per particle. The pathway leading from the initial S translation product as a multispanning transmembrane protein to the final SVP is largely unknown. To investigate the role of the four transmembrane domains (TM) of S in this process, we introduced mutations in these regions and characterized their effects on SVP formation in transfected Huh7 cells. We found that the insertion of one amino acid in the center of the α-helix of TM1 or the exchange of TM1 with a heterologous TM blocked SVP release and SVP formation by coexpressed wild-type S chains in a transdominant negative fashion. Surprisingly, this effect was partially neutralized when the mutations were expressed in the background of the HBV surface protein M, suggesting that mutations in TM1 could partially be complemented by the pre-S2 domain. The exchange of TM2 with heterologous TMs that form α-helices of the same lengths was also incompatible with SVP formation. However, these mutants no longer blocked SVP formation by coexpressed wild-type S. We conclude that TM2 is essential for the stable assembly of S chains by establishing intramembrane interactions.
机译:乙型肝炎病毒(HBV)表面蛋白不仅被掺入病毒粒子包膜,而且还形成仅由表面蛋白和脂质组成的亚病毒颗粒(SVP)。小HBV包膜蛋白S的异源表达产生了直径20 nm的分泌球形SVP,每个颗粒大约100 S分子。从最初的S翻译产物作为跨跨膜蛋白到最终的SVP的途径很大程度上是未知的。为了研究S的四个跨膜结构域(TM)在此过程中的作用,我们在这些区域中引入了突变,并表征了它们对转染的Huh7细胞中SVP形成的影响。我们发现在TM1的α-螺旋中心插入一个氨基酸或与异源TM交换的TM1可以通过共表达的野生型S链以显性负性方式阻止SVP的释放和SVP的形成。令人惊讶的是,当突变在HBV表面蛋白M的背景中表达时,这种作用被部分抵消,这表明TM1中的突变可能被pre-S2结构域部分补充。 TM2与形成相同长度的α-螺旋的异源TM的交换也与SVP的形成不相容。但是,这些突变体不再通过共表达的野生型S阻止SVP的形成。我们得出结论,TM2通过建立膜内相互作用对S链的稳定组装至关重要。

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