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人偏肺病毒小疏水蛋白具有与病毒孔蛋白一致的特性,并能调节病毒的融合活性。

The human metapneumovirus small hydrophobic protein has properties consistent with those of a viroporin and can modulate viral fusogenic activity.

机构信息

Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, Kentucky, USA.

出版信息

J Virol. 2014 Jun;88(11):6423-33. doi: 10.1128/JVI.02848-13. Epub 2014 Mar 26.

Abstract

UNLABELLED

Human metapneumovirus (HMPV) encodes three glycoproteins: the glycoprotein, which plays a role in glycosaminoglycan binding, the fusion (F) protein, which is necessary and sufficient for both viral binding to the target cell and fusion between the cellular plasma membrane and the viral membrane, and the small hydrophobic (SH) protein, whose function is unclear. The SH protein of the closely related respiratory syncytial virus has been suggested to function as a viroporin, as it forms oligomeric structures consistent with a pore and alters membrane permeability. Our analysis indicates that both the full-length HMPV SH protein and the isolated SH protein transmembrane domain can associate into higher-order oligomers. In addition, HMPV SH expression resulted in increases in permeability to hygromycin B and alteration of subcellular localization of a fluorescent dye, indicating that SH affects membrane permeability. These results suggest that the HMPV SH protein has several characteristics consistent with a putative viroporin. Interestingly, we also report that expression of the HMPV SH protein can significantly decrease HMPV F protein-promoted membrane fusion activity, with the SH extracellular domain and transmembrane domain playing a key role in this inhibition. These results suggest that the HMPV SH protein could regulate both membrane permeability and fusion protein function during viral infection.

IMPORTANCE

Human metapneumovirus (HMPV), first identified in 2001, is a causative agent of severe respiratory tract disease worldwide. The small hydrophobic (SH) protein is one of three glycoproteins encoded by all strains of HMPV, but the function of the HMPV SH protein is unknown. We have determined that the HMPV SH protein can alter the permeability of cellular membranes, suggesting that HMPV SH is a member of a class of proteins termed viroporins, which modulate membrane permeability to facilitate critical steps in a viral life cycle. We also demonstrated that HMPV SH can inhibit the membrane fusion function of the HMPV fusion protein. This work suggests that the HMPV SH protein has several functions, though the steps in the HMPV life cycle impacted by these functions remain to be clarified.

摘要

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人偏肺病毒(HMPV)编码三种糖蛋白:糖蛋白,其在糖胺聚糖结合中发挥作用,融合(F)蛋白,其对于病毒与靶细胞的结合以及细胞质膜与病毒膜之间的融合两者都是必需且充分的,和小疏水性(SH)蛋白,其功能尚不清楚。密切相关的呼吸道合胞病毒的 SH 蛋白已被提议作为病毒孔蛋白发挥作用,因为它形成与孔一致的寡聚结构并改变膜通透性。我们的分析表明,全长 HMPV SH 蛋白和分离的 SH 蛋白跨膜结构域都可以缔合成更高阶的寡聚体。此外,HMPV SH 的表达导致对 Hygromycin B 的通透性增加并且改变荧光染料的亚细胞定位,表明 SH 影响膜通透性。这些结果表明,HMPV SH 蛋白具有几种与假定的病毒孔蛋白一致的特征。有趣的是,我们还报告 HMPV SH 蛋白的表达可以显著降低 HMPV F 蛋白促进的膜融合活性,其中 SH 细胞外结构域和跨膜结构域在这种抑制中起关键作用。这些结果表明,HMPV SH 蛋白在病毒感染期间可以调节膜通透性和融合蛋白功能。

重要性

人偏肺病毒(HMPV)于 2001 年首次鉴定,是全球引起严重呼吸道疾病的病原体。小疏水性(SH)蛋白是 HMPV 所有株编码的三种糖蛋白之一,但 HMPV SH 蛋白的功能尚不清楚。我们已经确定 HMPV SH 蛋白可以改变细胞膜的通透性,这表明 HMPV SH 是一类被称为病毒孔蛋白的蛋白中的一员,其调节膜通透性以促进病毒生命周期中的关键步骤。我们还证明 HMPV SH 可以抑制 HMPV 融合蛋白的膜融合功能。这项工作表明 HMPV SH 蛋白具有多种功能,尽管这些功能影响的 HMPV 生命周期步骤仍有待阐明。

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