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Strain-Dependent Structural Variants of Herpes Simplex Virus Type 1 ICP34.5 Determine Viral Plaque Size, Efficiency of Glycoprotein Processing, and Viral Release and Neuroinvasive Disease Potential

机译:1型单纯疱疹病毒ICP34.5的株系依赖性结构变异确定病毒斑块大小,糖蛋白加工效率以及病毒释放和神经侵袭性疾病潜力

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摘要

The ability of certain strains of herpes simplex virus type 1 (HSV-1) to cause encephalitis or neuroinvasive disease in the mouse upon peripheral infection is dependent on a combination of activities of specific forms of viral proteins. The importance of specific variants of ICP34.5 to neuroinvasive disease potential and its correlation with small-plaque production, inefficient glycoprotein processing, and virus release were suggested by comparison of ICP34.5 from the SP7 virus, originally obtained from the brain of a neonate with disseminated disease, and the tissue culture-passaged progeny of SP7 (SLP5 and SLP10) and the KOS321 virus. SLP5, SLP10, and KOS321 are attenuated and exhibit a large-plaque phenotype, including efficient glycoprotein processing and viral release. We show that expression of the KOS321 ICP34.5 protein in cells infected with SP7 or ICP34.5 deletion mutants promotes large plaque formation and efficient viral glycoprotein processing, while expression of the SP7 ICP34.5 protein decreases efficiency of viral glycoprotein processing. In addition, a recombinant virus, 4hS1, with the SP7 ICP34.5 gene replacing the KOS321-like ICP34.5 gene in the SLP10a background, rescues the small-plaque phenotype and neuroinvasive disease. The major difference in the ICP34.5 gene product is the number of Pro-Ala-Thr repeats in the middle region of the protein, with 18 for SP7 and 3 for KOS321. Strain-dependent differences in the ICP34.5 protein can therefore alter the tissue culture behavior and the virulence of HSV-1.
机译:某些1型单纯疱疹病毒(HSV-1)株在外围感染后引起小鼠脑炎或神经侵袭性疾病的能力取决于特定形式的病毒蛋白的活性组合。通过比较最初来自新生儿大脑的SP7病毒中的ICP34.5,提出了ICP34.5特定变体对神经侵袭性疾病的重要性及其与小噬斑产生,糖蛋白加工效率低和病毒释放的相关性。传播疾病,以及SP7(SLP5和SLP10)和KOS321病毒的组织培养传代后代。 SLP5,SLP10和KOS321减毒并表现出大噬斑表型,包括有效的糖蛋白加工和病毒释放。我们显示在感染SP7或ICP34.5缺失突变体的细胞中,KOS321 ICP34.5蛋白的表达促进大噬斑形成和有效的病毒糖蛋白加工,而SP7 ICP34.5蛋白的表达降低病毒糖蛋白加工的效率。此外,重组病毒4hS1用SP7 ICP34.5基因取代了SLP10a背景下的KOS321-like ICP34.5基因,可以拯救小噬斑表型和神经侵袭性疾病。 ICP34.5基因产物的主要区别是蛋白质中间区域中Pro-Ala-Thr重复的数量,SP7为18个,KOS321为3个。因此,ICP34.5蛋白中的菌株依赖性差异可以改变组织培养行为和HSV-1的毒力。

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