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单纯疱疹病毒1型ICP35的自我缔合通过卷曲螺旋相互作用实现,并促进与主要衣壳蛋白的稳定相互作用。

Self-association of herpes simplex virus type 1 ICP35 is via coiled-coil interactions and promotes stable interaction with the major capsid protein.

作者信息

Pelletier A, Dô F, Brisebois J J, Lagacé L, Cordingley M G

机构信息

Department of Biological Sciences, Bio-Méga Research Division, Boehringer Ingelheim, (Canada) Ltd., Laval, Quebec.

出版信息

J Virol. 1997 Jul;71(7):5197-208. doi: 10.1128/JVI.71.7.5197-5208.1997.

Abstract

The ordered copolymerization of viral proteins to form the herpes simplex virus (HSV) capsid occurs within the nucleus of the infected cell and is a complex process involving the products of at least six viral genes. In common with capsid assembly in double-stranded DNA bacteriophages, HSV capsid assembly proceeds via the assembly of an outer capsid shell around an interior scaffold. This capsid intermediate matures through loss of the scaffold and packaging of the viral genomic DNA. The interior of the HSV capsid intermediate contains the viral protease and assembly protein which compose the scaffold. Proteolytic processing of these proteins is essential for and accompanies capsid maturation. The assembly protein (ICP35) is the primary component of the scaffold, and previous studies have demonstrated it to be capable of intermolecular association with itself and with the major capsid protein, VP5. We have defined structural elements within ICP35 which are responsible for intermolecular self-association and for interaction with VP5. Yeast (Saccharomyces cerevisiae) two-hybrid assays and far-Western studies with purified recombinant ICP35 mapped a core self-association domain between Ser165 and His219. Site-directed mutations in this domain implicate a putative coiled coil in ICP35 self-association. This coiled-coil motif is highly conserved within the assembly proteins of other alpha herpesviruses. In the two-hybrid assay the core self-association domain was sufficient to mediate stable self-association only in the presence of additional structural elements in either N- or C-terminal flanking regions. These regions also contain conserved sequences which exhibit a high propensity for alpha helicity and may contribute to self-association by forming additional short coiled coils. Our data supports a model in which ICP35 molecules have an extended conformation and associate in parallel orientation through homomeric coiled-coil interactions. In additional two-hybrid experiments we evaluated ICP35 mutants for association with VP5. We discovered that in addition to the C-terminal 25 amino acids of ICP35, previously shown to be required for VP5 binding, an additional upstream region was required. This region is between Ser165 and His234 and contains the core self-association domain. Site-directed mutations and construction of chimeric molecules in which the self-association domain of ICP35 was replaced by the GCN4 leucine zipper indicated that this region contributes to VP5 binding through mediating self-association of ICP35 and not through direct binding interactions. Our results suggest that self-association of ICP35 strongly promotes stable association with VP5 in vivo and are consistent with capsid formation proceeding via formation of stable subassemblies of ICP35 and VP5 which subsequently assemble into capsid intermediates in the nucleus.

摘要

病毒蛋白有序共聚形成单纯疱疹病毒(HSV)衣壳的过程发生在受感染细胞的细胞核内,是一个复杂的过程,涉及至少六个病毒基因的产物。与双链DNA噬菌体的衣壳组装一样,HSV衣壳组装通过围绕内部支架组装外衣壳壳进行。这种衣壳中间体通过支架的丢失和病毒基因组DNA的包装而成熟。HSV衣壳中间体的内部含有构成支架的病毒蛋白酶和组装蛋白。这些蛋白的蛋白水解加工对于衣壳成熟至关重要且伴随着衣壳成熟过程。组装蛋白(ICP35)是支架的主要成分,先前的研究表明它能够与自身以及主要衣壳蛋白VP5进行分子间缔合。我们已经确定了ICP35中负责分子间自缔合以及与VP5相互作用的结构元件。酵母(酿酒酵母)双杂交实验以及对纯化的重组ICP35进行的Far-Western研究确定了Ser165和His219之间的一个核心自缔合结构域。该结构域中的定点突变表明ICP35自缔合中存在一个假定的卷曲螺旋。这种卷曲螺旋基序在其他α疱疹病毒的组装蛋白中高度保守。在双杂交实验中,核心自缔合结构域仅在N端或C端侧翼区域存在额外结构元件时才足以介导稳定的自缔合。这些区域还包含保守序列,这些序列具有形成α螺旋的高度倾向,可能通过形成额外的短卷曲螺旋来促进自缔合。我们的数据支持一个模型,即ICP35分子具有伸展构象,并通过同聚卷曲螺旋相互作用以平行方向缔合。在另外的双杂交实验中,我们评估了ICP35突变体与VP5的缔合情况。我们发现,除了先前显示的VP5结合所需的ICP35的C端25个氨基酸外,还需要一个额外的上游区域。该区域在Ser165和His234之间,包含核心自缔合结构域。定点突变以及构建将ICP35的自缔合结构域替换为GCN4亮氨酸拉链的嵌合分子表明,该区域通过介导ICP35的自缔合而非直接结合相互作用来促进VP5结合。我们的结果表明,ICP35的自缔合在体内强烈促进与VP5的稳定缔合,并且与衣壳形成通过形成ICP35和VP5的稳定亚组装体进行,随后这些亚组装体在细胞核中组装成衣壳中间体的过程一致。

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