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一种无包膜病毒膜融合蛋白中异常内部融合肽的结构与功能特性

Structural and functional properties of an unusual internal fusion peptide in a nonenveloped virus membrane fusion protein.

作者信息

Shmulevitz Maya, Epand Raquel F, Epand Richard M, Duncan Roy

机构信息

Department of Microbiology and Immunology, Faculty of Medicine, Dalhousie University, Halifax, Nova Scotia, Canada B3H 4H7.

出版信息

J Virol. 2004 Mar;78(6):2808-18. doi: 10.1128/jvi.78.6.2808-2818.2004.

Abstract

The avian and Nelson Bay reoviruses are two of only a limited number of nonenveloped viruses capable of inducing cell-cell membrane fusion. These viruses encode the smallest known membrane fusion proteins (p10). We now show that a region of moderate hydrophobicity we call the hydrophobic patch (HP), present in the small N-terminal ectodomain of p10, shares the following characteristics with the fusion peptides of enveloped virus fusion proteins: (i) an abundance of glycine and alanine residues, (ii) a potential amphipathic secondary structure, (iii) membrane-seeking characteristics that correspond to the degree of hydrophobicity, and (iv) the ability to induce lipid mixing in a liposome fusion assay. The p10 HP is therefore predicted to provide a function in the mechanism of membrane fusion similar to those of the fusion peptides of enveloped virus fusion peptides, namely, association with and destabilization of opposing lipid bilayers. Mutational and biophysical analysis suggested that the internal fusion peptide of p10 lacks alpha-helical content and exists as a disulfide-stabilized loop structure. Similar kinked structures have been reported in the fusion peptides of several enveloped virus fusion proteins. The preservation of a predicted loop structure in the fusion peptide of this unusual nonenveloped virus membrane fusion protein supports an imperative role for a kinked fusion peptide motif in biological membrane fusion.

摘要

禽呼肠孤病毒和纳尔逊湾呼肠孤病毒是仅有的少数能够诱导细胞-细胞膜融合的无包膜病毒中的两种。这些病毒编码已知最小的膜融合蛋白(p10)。我们现在发现,p10小的N端胞外域中一个我们称为疏水补丁(HP)的中等疏水区,与包膜病毒融合蛋白的融合肽具有以下共同特征:(i)富含甘氨酸和丙氨酸残基;(ii)潜在的两亲二级结构;(iii)与疏水性程度相对应的趋向膜的特性;(iv)在脂质体融合试验中诱导脂质混合的能力。因此,预计p10 HP在膜融合机制中提供与包膜病毒融合肽的融合肽类似的功能,即与相对的脂质双层结合并使其不稳定。突变和生物物理分析表明,p10的内部融合肽缺乏α-螺旋结构,以二硫键稳定的环结构形式存在。在几种包膜病毒融合蛋白的融合肽中也报道了类似的扭结结构。这种不寻常的无包膜病毒膜融合蛋白的融合肽中预测的环结构的保留,支持了扭结融合肽基序在生物膜融合中的重要作用。

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