首页> 美国卫生研究院文献>Journal of Virology >Mutation of Single Hydrophobic Residue I27 L35 F39 L58 L65 L67 or L71 in the N Terminus of VP5 Abolishes Interaction with the Scaffold Protein and Prevents Closure of Herpes Simplex Virus Type 1 Capsid Shells
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Mutation of Single Hydrophobic Residue I27 L35 F39 L58 L65 L67 or L71 in the N Terminus of VP5 Abolishes Interaction with the Scaffold Protein and Prevents Closure of Herpes Simplex Virus Type 1 Capsid Shells

机译:VP5 N末端单个疏水残基I27L35F39L58L65L67或L71的突变消除了与支架蛋白的相互作用并阻止了单纯疱疹病毒1型衣壳的封闭。

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摘要

Protein-protein interactions drive the assembly of the herpes simplex virus type 1 (HSV-1) capsid. A key interaction occurs between the C-terminal tail of the scaffold protein (pre-22a) and the major capsid protein (VP5). Previously (Z. Hong, M. Beaudet-Miller, J. Durkin, R. Zhang, and A. D. Kwong, J. Virol. >70:533-540, 1996) it was shown that the minimal domain in the scaffold protein necessary for this interaction was composed of a hydrophobic amphipathic helix. The goal of this study was to identify the hydrophobic residues in VP5 important for this bimolecular interaction. Results from the genetic analysis of second-site revertant virus mutants identified the importance of the N terminus of VP5 for the interaction with the scaffold protein. This allowed us to focus our efforts on a small region of this large polypeptide. Twenty-four hydrophobic residues, starting at L23 and ending at F84, were mutated to alanine. All the mutants were first screened for interaction with pre-22a in the yeast two-hybrid assay. From this in vitro assay, seven residues, I27, L35, F39, L58, L65, L67, and L71, that eliminated the interaction when mutated were identified. All 24 mutants were introduced into the virus genome with a genetic marker rescue/marker transfer system. For this system, viruses and cell lines that greatly facilitated the introduction of the mutants into the genome were made. The same seven mutants that abolished interaction of VP5 with pre-22a resulted in an absolute requirement for wild-type VP5 for growth of the viruses. The viruses encoding these mutations in VP5 were capable of forming capsid shells comprised of VP5, VP19C, VP23, and VP26, but the closure of these shells into an icosahedral structure was prevented. Mutation at L75 did not affect the ability of this protein to interact with pre-22a, as judged from the in vitro assay, but this mutation specified a lethal effect for virus growth and abolished the formation of any detectable assembled structure. Thus, it appears that the L75 residue is important for another essential interaction of VP5 with the capsid shell proteins. The congruence of the data from the previous and present studies demonstrates the key roles of two regions in the N terminus of this large protein that are crucial for this bimolecular interaction. Thus, residues I27, L35, and F39 comprise the first subdomain and residues L58, L65, L67 and L71 comprise a second subdomain of VP5. These seven hydrophobic residues are important for the interaction of VP5 with the scaffold protein and consequently the formation of an icosahedral shell structure that encloses the viral genome.
机译:蛋白质-蛋白质相互作用驱动单纯疱疹病毒1型(HSV-1)衣壳的组装。关键相互作用发生在支架蛋白(pre-22a)的C末端尾部和主要衣壳蛋白(VP5)之间。以前(Z. Hong,M. Beaudet-Miller,J. Durkin,R. Zhang和AD Kwong,J. Virol。> 70: 533-540,1996),已经证明了最小域这种相互作用所必需的支架蛋白中的“α”由疏水性两亲性螺旋组成。这项研究的目的是确定VP5中对这种双分子相互作用重要的疏水残基。来自第二位点逆转录病毒突变体的遗传分析结果确定了VP5 N末端对于与支架蛋白相互作用的重要性。这使我们可以将精力集中在这种大多肽的小区域上。从L23开始到F84结束的二十四个疏水残基被突变为丙氨酸。首先在酵母双杂交试验中筛选所有突变体与pre-22a的相互作用。从该体外测定中,鉴定了七个残基,即突变时消除相互作用的I27,L35,F39,L58,L65,L67和L71。使用遗传标记拯救/标记转移系统将所有24个突变体引入病毒基因组。对于该系统,制备了大大促进将突变体引入基因组的病毒和细胞系。取消了VP5与22a之前的相互作用的相同的七个突变体,导致对野生型VP5病毒生长的绝对需求。编码VP5中这些突变的病毒能够形成由VP5,VP19C,VP23和VP26组成的衣壳外壳,但是可以防止这些外壳封闭成二十面体结构。根据体外试验判断,L75位点的突变不会影响该蛋白与22a前体相互作用的能力,但这种突变对病毒的生长具有致命作用,并消除了任何可检测的组装结构的形成。因此,看来L75残基对于VP5与衣壳蛋白的另一基本相互作用是重要的。来自先前和当前研究的数据的一致性证明了这种大蛋白的N末端两个区域的关键作用,这对于这种双分子相互作用至关重要。因此,残基I27,L35和F39构成第一子域,而残基L58,L65,L67和L71构成VP5的第二子域。这七个疏水残基对于VP5与支架蛋白的相互作用以及因此形成包围病毒基因组的二十面体壳结构的形成是重要的。

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