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Residues of VP26 of Herpes Simplex Virus Type 1 That Are Required for Its Interaction with Capsids

机译:1型单纯疱疹病毒与衣壳相互作用所需的VP26残基

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摘要

VP26 is the smallest capsid protein and decorates the outer surface of the capsid shell of herpes simplex virus. It is located on the hexons at equimolar amounts with VP5. Its small size (112 amino acids) and high copy number make it an attractive molecule to use as a probe to investigate the complex pattern of capsid protein interactions. An in vitro capsid binding assay and a green fluorescent protein (GFP) localization assay were used to identify VP26 residues important for its interaction with capsids. To test for regions of VP26 that may be essential for binding to capsids, three small in-frame deletion mutations were generated in VP26, Δ18-25, Δ54-60, and Δ93-100. Their designations refer to the amino acids deleted by the mutation. The mutation at the C terminus of the molecule, which encompasses a region of highly conserved residues, abolished binding to the capsid and the localization of GFP to the nucleus in characteristic large puncta. Additional mutations revealed that a region of VP26 spanning from residue 50 to 112 was sufficient for the localization of the fused protein (VP26-GFP) to the nucleus and for it to bind to capsids. Using site-directed mutagenesis of conserved residues in VP26, two key residues for protein-protein interaction, F79 and G93, were identified as judged by the localization of GFP to nuclear puncta. When these mutations were analyzed in the capsid binding assay, they were also found to eliminate binding of VP26 to the capsid structure. Surprisingly, additional mutations that affected the ability of VP26 to bind to capsids in vitro were uncovered. Mutations at residues A58 and L64 resulted in a reduced ability of VP26 to bind to capsids. Mutation of the hydrophobic residues M78 and A80, which are adjacent to the hydrophobic residue F79, abolished VP26 capsid binding. In addition, the block of conserved amino acids in the carboxy end of the molecule had the most profound effect on the ability of VP26 to interact with capsids. Mutation of amino acid G93, L94, R95, R96, or T97 resulted in a greatly diminished ability of VP26 to bind capsids. Yet, all of these residues other than G93 were able to efficiently translocate or concentrate GFP into the nucleus, giving rise to the punctate fluorescence. Thus, the interaction of VP26 with the capsid appears to occur through at least two separate mechanisms. The initial interaction of VP26 and VP5 may occur in the cytoplasm or when VP5 is localized in the nucleus. Residues F79 and G93 are important for this bi-molecular interaction, resulting in the accumulation of VP26 in the nucleus in concentrated foci. Subsequent to this association, additional amino acids of VP26, including those in the C-terminal conserved domain, are important for interaction of VP26 with the three-dimensional capsid structure.
机译:VP26是最小的衣壳蛋白,可修饰单纯疱疹病毒衣壳的外表面。它位于六边体上,与VP5等摩尔。它的小尺寸(112个氨基酸)和高拷贝数使其成为一种有吸引力的分子,可作为探针来研究衣壳蛋白相互作用的复杂模式。体外衣壳结合测定法和绿色荧光蛋白(GFP)定位测定法被用来鉴定对与衣壳相互作用至关重要的VP26残基。为了测试可能与衣壳结合必不可少的VP26区域,在VP26,Δ18-25,Δ54-60和Δ93-100中产生了三个小的框内缺失突变。它们的名称是指由突变缺失的氨基酸。分子C端的突变涵盖了高度保守的残基区域,取消了与衣壳的结合以及GFP在特征性大点状细胞中的定位。额外的突变表明,VP26的区域从残基50到112足以将融合蛋白(VP26-GFP)定位到细胞核,并使其与衣壳结合。通过对VP26中保守残基进行定点诱变,通过GFP定位于核小点的判断,确定了两个蛋白质-蛋白质相互作用的关键残基F79和G93。当在衣壳结合试验中分析这些突变时,还发现它们消除了VP26与衣壳结构的结合。令人惊讶地,未发现影响VP26在体外结合衣壳的能力的其他突变。残基A58和L64的突变导致VP26结合衣壳的能力降低。与疏水残基F79相邻的疏水残基M78和A80的突变消除了VP26衣壳结合。另外,分子羧基末端的保守氨基酸嵌段对VP26与衣壳相互作用的能力具有最深远的影响。氨基酸G93,L94,R95,R96或T97的突变导致VP26结合衣壳的能力大大降低。但是,除G93以外,所有这些残基均能够有效地将GFP转运或浓缩到细胞核中,从而产生点状荧光。因此,VP26与衣壳的相互作用似乎是通过至少两种单独的机制发生的。 VP26和VP5的初始相互作用可能发生在细胞质中或当VP5位于细胞核中时。残基F79和G93对于这种双分子相互作用很重要,导致VP26在浓缩灶的细胞核中积累。此关联之后,VP26的其他氨基酸(包括C端保守结构域中的氨基酸)对于VP26与三维衣壳结构的相互作用很重要。

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