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首页> 外文期刊>Current topics in microbiology and immunology >Molecular Characterization of Varicella Zoster Virus in Latently Infected Human Ganglia: Physical State and Abundance of VZV DNA, Quantitation of Viral Transcripts and Detection of VZV-Specific Proteins
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Molecular Characterization of Varicella Zoster Virus in Latently Infected Human Ganglia: Physical State and Abundance of VZV DNA, Quantitation of Viral Transcripts and Detection of VZV-Specific Proteins

机译:水痘带状疱疹病毒在潜在感染的人类神经节中的分子特征:VZV DNA的物理状态和丰度,病毒转录物的定量和VZV特异性蛋白的检测

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摘要

Varicella zoster virus (VZV) establishes latency in neurons of human peripheral ganglia where the virus genome is most likely maintained as a circular episome bound to histones. There is considerable variability among individuals in the number of latent VZV DNA copies. The VZV DNA burden does not appear to exceed that of herpes simplex type 1 (HSV-1). Expression of VZV genes during latency is highly restricted and is regulated epigenetically. Of the VZV open reading frames (ORFs) that have been analyzed for transcription during latency using cDNA sequencing, only ORFs 21, 29, 62, 63, and 66 have been detected. VZV ORF 63 is the most frequently and abundantly transcribed VZV gene detected in human ganglia during latency, suggesting a critical role for this gene in maintaining the latent state and perhaps the early stages of virus reactivation. The inconsistent detection and low abundance of other VZV transcripts suggest that these genes play secondary roles in latency or possibly reflect a subpopulation of neurons undergoing VZV reactivation. New technologies, such as GeXPS multiplex PCR, have the sensitivity to detect multiple low abundance transcripts and thus provide a means to elucidate the entire VZV transcriptome during latency.
机译:水痘带状疱疹病毒(VZV)在人外周神经节的神经元中建立潜伏期,在该潜伏期中,病毒基因组最有可能以与组蛋白结合的环状附加体形式维持。潜在的VZV DNA拷贝数在个体之间有很大的差异。 VZV DNA负担似乎未超过单纯疱疹1型(HSV-1)的负担。 VZV基因在潜伏期的表达受到高度限制,并在表观遗传学上受到调控。在使用cDNA测序对潜伏期进行转录分析的VZV开放阅读框(ORF)中,仅检测到ORF 21、29、62、63和66。 VZV ORF 63是潜伏期在人类神经节中检测到最频繁且转录最充分的VZV基因,表明该基因在维持潜在状态和病毒激活的早期阶段中起着至关重要的作用。其他VZV转录本的不一致检测和低丰度表明,这些基因在潜伏期中起次要作用,或者可能反映了正在进行VZV激活的神经元的亚群。 GeXPS多重PCR等新技术具有检测多个低丰度转录本的敏感性,因此提供了一种在潜伏期阐明整个VZV转录组的方法。

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