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Identification and Visualization of Functionally Important Domains and Residues in Herpes Simplex Virus Glycoprotein K(gK) Using a Combination of Phylogenetics and Protein Modeling

机译:结合系统发育学和蛋白质建模鉴定和可视化单纯疱疹病毒糖蛋白K(gK)中重要功能域和残基

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摘要

Alphaherpesviruses are a subfamily of herpesviruses that include the significant human pathogens herpes simplex viruses (HSV) and varicella zoster virus (VZV). Glycoprotein K (gK), conserved in all alphaherpesviruses, is a multi-membrane spanning virion glycoprotein essential for virus entry into neuronal axons, virion assembly, and pathogenesis. Despite these critical functions, little is known about which gK domains and residues are most important for maintaining these functions across all alphaherpesviruses. Herein, we employed phylogenetic and structural analyses including the use of a novel model for evolutionary rate variation across residues to predict conserved gK functional domains. We found marked heterogeneity in the evolutionary rate at the level of both individual residues and domains, presumably as a result of varying selective constraints. To clarify the potential role of conserved sequence features, we predicted the structures of several gK orthologs. Congruent with our phylogenetic analysis, slowly evolving residues were identified at potentially structurally significant positions across domains. We found that using a quantitative measure of amino acid rate variation combined with molecular modeling we were able to identify amino acids predicted to be critical for gK protein structure/function. This analysis yields targets for the design of anti-herpesvirus therapeutic strategies across all alphaherpesvirus species that would be absent from more traditional analyses of conservation.
机译:Alphaherpesviruses是疱疹病毒的一个亚科,包括重要的人类病原体单纯疱疹病毒(HSV)和水痘带状疱疹病毒(VZV)。糖蛋白K(gK),在所有α疱疹病毒中都是保守的,是一种跨膜的病毒体糖蛋白,对于病毒进入神经元轴突,病毒体组装和发病机理至关重要。尽管具有这些关键功能,但对于维持所有α疱疹病毒的这些功能而言,对于哪些gK域和残基最重要的了解甚少。在本文中,我们进行了系统发育和结构分析,包括使用新型模型进行残基进化速率变化预测保守的gK功能域。我们发现,在进化速度上,在各个残基和结构域的水平上都存在明显的异质性,大概是由于各种选择性限制所致。为了阐明保守序列特征的潜在作用,我们预测了几种gK直系同源物的结构。与我们的系统发育分析一致,在域中潜在的结构显着位置鉴定出缓慢进化的残基。我们发现,通过结合氨基酸速率变化的定量测量和分子建模,我们能够鉴定出预计对gK蛋白结构/功能至关重要的氨基酸。该分析为所有α-疱疹病毒种类的抗疱疹病毒治疗策略设计提供了目标,而传统的保护性分析则没有这种目标。

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