Animation of VZV DNA

Randall. J. Cohrs , J. Rovnak
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Abstract

Varicella zoster virus (VZV) is a ubiquitous neurotropic alphaherpesvirus that typically causes childhood varicella (chickenpox) on primary infection and zoster (shingles) after reactivation. During latency most of the ~70 virus genes are transcriptionally silent; however, analysis of latent VZV gene transcription in its natural setting requires analysis of human ganglia removed at autopsy. Recognizing the problems associated with such samples, we have observed that as the post-mortem time interval increases, so do the number of VZV genes transcribed. Based on our data and recent similar findings concerning reactivation of HSV-1, we propose an interesting testable model to describe epigenetic control of neurotropic alphaherpesvirus gene transcription during latency and early reactivation.

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VZV DNA动画
水痘带状疱疹病毒(VZV)是一种普遍存在的嗜神经性甲疱疹病毒,通常引起儿童水痘(水痘)初次感染和带状疱疹(带状疱疹)后再激活。在潜伏期,约70个病毒基因中的大多数处于转录沉默状态;然而,在自然环境中分析潜伏的VZV基因转录需要分析尸检中切除的人类神经节。认识到与这些样本相关的问题,我们观察到,随着死后时间间隔的增加,VZV基因转录的数量也在增加。基于我们的数据和最近关于HSV-1再激活的类似发现,我们提出了一个有趣的可测试模型来描述潜伏和早期再激活期间嗜神经性α疱疹病毒基因转录的表观遗传控制。
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