首页> 美国卫生研究院文献>PLoS Pathogens >Dimerization-Induced Allosteric Changes of the Oxyanion-Hole Loop Activate the Pseudorabies Virus Assemblin pUL26N, a Herpesvirus Serine Protease
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Dimerization-Induced Allosteric Changes of the Oxyanion-Hole Loop Activate the Pseudorabies Virus Assemblin pUL26N, a Herpesvirus Serine Protease

机译:二聚体诱导的高铁离子-孔环的变构变化激活了伪狂犬病病毒集合蛋白pUL26N,一种疱疹病毒丝氨酸蛋白酶。

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摘要

Herpesviruses encode a characteristic serine protease with a unique fold and an active site that comprises the unusual triad Ser-His-His. The protease is essential for viral replication and as such constitutes a promising drug target. In solution, a dynamic equilibrium exists between an inactive monomeric and an active dimeric form of the enzyme, which is believed to play a key regulatory role in the orchestration of proteolysis and capsid assembly. Currently available crystal structures of herpesvirus proteases correspond either to the dimeric state or to complexes with peptide mimetics that alter the dimerization interface. In contrast, the structure of the native monomeric state has remained elusive. Here, we present the three-dimensional structures of native monomeric, active dimeric, and diisopropyl fluorophosphate-inhibited dimeric protease derived from pseudorabies virus, an alphaherpesvirus of swine. These structures, solved by X-ray crystallography to respective resolutions of 2.05, 2.10 and 2.03 Å, allow a direct comparison of the main conformational states of the protease. In the dimeric form, a functional oxyanion hole is formed by a loop of 10 amino-acid residues encompassing two consecutive arginine residues (Arg136 and Arg137); both are strictly conserved throughout the herpesviruses. In the monomeric form, the top of the loop is shifted by approximately 11 Å, resulting in a complete disruption of the oxyanion hole and loss of activity. The dimerization-induced allosteric changes described here form the physical basis for the concentration-dependent activation of the protease, which is essential for proper virus replication. Small-angle X-ray scattering experiments confirmed a concentration-dependent equilibrium of monomeric and dimeric protease in solution.
机译:疱疹病毒编码具有独特折叠的特征性丝氨酸蛋白酶和包含不常见三联体Ser-His-His的活性位点。蛋白酶对于病毒复制是必不可少的,因此构成有希望的药物靶标。在溶液中,该酶的非活性单体形式与活性二聚体形式之间存在动态平衡,据信在蛋白质水解和衣壳装配的编排中起关键的调节作用。疱疹病毒蛋白酶的当前可用的晶体结构对应于二聚体状态或对应于具有改变二聚化界面的肽模拟物的复合物。相反,天然单体状态的结构仍然难以捉摸。在这里,我们介绍了天然的单体,活性二聚体和二异丙基氟磷酸盐抑制的二聚体蛋白酶的三维结构,该蛋白酶源自伪狂犬病病毒,一种猪的α疱疹病毒。这些结构通过X射线晶体学分别解析为2.05、2.10和2.03Å的分辨率,可以直接比较蛋白酶的主要构象状态。在二聚体形式中,功能性氧阴离子孔是由10个氨基酸残基组成的环形成,这些氨基酸残基包含两个连续的精氨酸残基(Arg136和Arg137);两者在整个疱疹病毒中都严格保守。以单体形式,环的顶部移动了约11,导致氧阴离子孔完全破坏并失去活性。此处描述的二聚化诱导的变构变化构成了蛋白酶浓度依赖性激活的物理基础,蛋白酶对于适当的病毒复制至关重要。小角X射线散射实验证实了溶液中单体和二聚体蛋白酶的浓度依赖性平衡。

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