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A Wide Extent of Inter-Strain Diversity in Virulent and Vaccine Strains of Alphaherpesviruses

机译:Alphaherpesviruses的毒力和疫苗株中菌株间的多样性差异很大。

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摘要

Alphaherpesviruses are widespread in the human population, and include herpes simplex virus 1 (HSV-1) and 2, and varicella zoster virus (VZV). These viral pathogens cause epithelial lesions, and then infect the nervous system to cause lifelong latency, reactivation, and spread. A related veterinary herpesvirus, pseudorabies (PRV), causes similar disease in livestock that result in significant economic losses. Vaccines developed for VZV and PRV serve as useful models for the development of an HSV-1 vaccine. We present full genome sequence comparisons of the PRV vaccine strain Bartha, and two virulent PRV isolates, Kaplan and Becker. These genome sequences were determined by high-throughput sequencing and assembly, and present new insights into the attenuation of a mammalian alphaherpesvirus vaccine strain. We find many previously unknown coding differences between PRV Bartha and the virulent strains, including changes to the fusion proteins gH and gB, and over forty other viral proteins. Inter-strain variation in PRV protein sequences is much closer to levels previously observed for HSV-1 than for the highly stable VZV proteome. Almost 20% of the PRV genome contains tandem short sequence repeats (SSRs), a class of nucleic acids motifs whose length-variation has been associated with changes in DNA binding site efficiency, transcriptional regulation, and protein interactions. We find SSRs throughout the herpesvirus family, and provide the first global characterization of SSRs in viruses, both within and between strains. We find SSR length variation between different isolates of PRV and HSV-1, which may provide a new mechanism for phenotypic variation between strains. Finally, we detected a small number of polymorphic bases within each plaque-purified PRV strain, and we characterize the effect of passage and plaque-purification on these polymorphisms. These data add to growing evidence that even plaque-purified stocks of stable DNA viruses exhibit limited sequence heterogeneity, which likely seeds future strain evolution.
机译:Alphaherpesviruses病毒在人类中很普遍,包括单纯疱疹病毒1(HSV-1)和2,以及水痘带状疱疹病毒(VZV)。这些病毒病原体引起上皮病变,然后感染神经系统,导致终身潜伏,重新激活和扩散。相关的兽医疱疹病毒伪狂犬病(PRV)在牲畜中引起类似的疾病,导致重大的经济损失。为VZV和PRV开发的疫苗可作为开发HSV-1疫苗的有用模型。我们提出了PRV疫苗株Bartha和两个有毒PRV分离株Kaplan和Becker的全基因组序列比较。这些基因组序列是通过高通量测序和组装确定的,为哺乳动物α疱疹病毒疫苗株的减毒提供了新的见解。我们发现PRV Bartha与强毒株之间存在许多以前未知的编码差异,包括融合蛋白gH和gB以及超过40种其他病毒蛋白的变化。与高度稳定的VZV蛋白质组相比,PRV蛋白质序列中的株间变异与HSV-1先前观察到的水平更接近。 PRV基因组中几乎20%包含串联短序列重复(SSR),这是一类核酸基序,其长度变化与DNA结合位点效率,转录调控和蛋白质相互作用的变化有关。我们在整个疱疹病毒家族中发现了SSR,并提供了病毒内部和菌株之间的SSR的第一个全局特征。我们发现PRV和HSV-1的不同分离株之间的SSR长度变异,这可能为菌株之间的表型变异提供了新的机制。最后,我们在每个噬菌斑纯化的PRV菌株中检测到少量的多态性碱基,并表征了传代和噬菌斑纯化对这些多态性的影响。这些数据增加了越来越多的证据,表明即使斑块纯化的稳定DNA病毒原种也显示出有限的序列异质性,这很可能为未来的菌株进化提供了种子。

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