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首页> 外文期刊>Virus Genes >Genome-wide reduction in transcriptomal profiles of varicella-zoster virus vaccine strains compared with Parental Oka strain using long oligonucleotide microarrays
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Genome-wide reduction in transcriptomal profiles of varicella-zoster virus vaccine strains compared with Parental Oka strain using long oligonucleotide microarrays

机译:与使用长寡核苷酸微阵列的亲本Oka菌株相比,水痘带状疱疹病毒疫苗株的转录组谱全基因组减少

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摘要

Varicella-Zoster virus (VZV) causes varicella as a primary infection following which it becomes latent in human ganglia and then reactivates to cause herpes zoster. VZV vaccines are used to prevent primary infection with varicella, and also to reduce the incidence of viral reactivation causing herpes zoster and post-herpetic neuralgia. To gain further insights into the molecular basis of their attenuated virulence, we used long oligonucleotide microarrays to determine the lytic transcriptomal profiles of two vaccine VZV strains (Merck and GSK) compared with the Oka parental (P-Oka) strain. There was a global downregulation of transcription of both vaccines relative to P-Oka, although this downregulation was more extensive in the GSK strain. Open Reading Frames (ORFs) 62 and 14 were the most transcriptionally downregulated on the arrays for both vaccines compared with the parental strain.
机译:水痘带状疱疹病毒(VZV)引起水痘为主要感染,随后在人神经节中潜伏,然后重新激活以引起带状疱疹。 VZV疫苗用于预防水痘原发感染,还可以减少引起疱疹带状疱疹和疱疹后神经痛的病毒再激活的发生率。为了进一步了解其减毒力的分子基础,我们使用长的寡核苷酸微阵列来确定与Oka亲本(P-Oka)菌株相比的两种疫苗VZV菌株(Merck和GSK)的裂解转录谱。相对于P-Oka,这两种疫苗的转录均下调,尽管这种下调在GSK菌株中更为广泛。与两种疫苗相比,两种疫苗在阵列上的开放阅读框(ORF)62和14转录下调程度最高。

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