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The vertex specific proteins pUL17 and pUL25 mechanically reinforce Herpes Simplex Virus capsids

机译:顶点特异性蛋白pUL17和pUL25机械增强单纯疱疹病毒衣壳

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摘要

Using atomic force microscopy imaging and nanoindentation measurements, we investigated the effect of the minor capsid proteins pUL17 and pUL25 on the structural stability of the icosahedral Herpes Simplex Virus capsids. pUL17 and pUL25 that form the capsid vertex-specific component (CVSC) particularly contributed to the capsid resilience along the 5-fold and 2-fold, but not along the 3-fold icosahedral axes. Our detailed analyses, including quantitative mass spectrometry on the protein composition of the capsids, revealed that pUL17 and pUL25 are both required to stabilize the capsid shells at the vertices. This indicates that herpesviruses withstand the internal pressure that is generated during DNA genome packaging by locally reinforcing the mechanical sturdiness of the vertices, the most stressed part of the capsids.IMPORTANCE In this study the structural, material properties of Herpes Simplex Virus type 1 were investigated. The capsid of Herpes Simplex Virus is built up of a variety of proteins and we scrutinized the influence of two of these proteins on the stability of the capsid. For this we used a scanning force microscope that makes detailed, topographic images of the particles and that is able to perform mechanical deformation measurements. Using this approach we revealed that both studied proteins play an essential role in viral stability. These new insights support us to form a complete view on viral structure and could furthermore possibly not only help to develop specific anti-virals, but also to build protein shells with improved stability for drug delivery purposes.
机译:使用原子力显微镜成像和纳米压痕测量,我们研究了小衣壳蛋白pUL17和pUL25对二十面体单纯疱疹病毒衣壳结构稳定性的影响。形成衣壳顶点特异性组分(CVSC)的pUL17和pUL25尤其有助于沿5倍和2倍而不是3倍二十面体轴的衣壳弹性。我们的详细分析(包括对衣壳蛋白组成进行定量质谱分析)显示,pUL17和pUL25都需要使衣壳在顶点处稳定。这表明疱疹病毒可承受局部加重衣壳最受应力的部分的顶点的机械坚固性,从而承受DNA基因组包装过程中产生的内部压力。重要性在本研究中,研究了1型单纯疱疹病毒的结构,物质特性。 。单纯疱疹病毒的衣壳由多种蛋白质组成,我们仔细研究了其中两种蛋白质对衣壳稳定性的影响。为此,我们使用了扫描力显微镜,该显微镜可以对颗粒进行详细的地形成像,并且可以执行机械变形测量。使用这种方法,我们揭示了两种研究的蛋白质在病毒稳定性中都起着至关重要的作用。这些新见解支持我们对病毒结构形成完整的了解,并且不仅可能有助于开发特定的抗病毒药物,而且还可以构建具有改善稳定性的蛋白壳,以达到药物递送目的。

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