Department of Molecular Genetics and Microbiology, Stony Brook University, Stony Brook, NY 11794, United States.
Curr Opin Virol. 2013 Jun;3(3):276-84. doi: 10.1016/j.coviro.2013.04.006. Epub 2013 May 16.
Technological advances in genome-wide transcript analysis, referred to as the transcriptome, using microarrays and deep RNA sequencing methodologies are rapidly extending our understanding of the genetic content of the gammaherpesviruses (γHVs). These vast transcript analyses continue to uncover the complexity of coding transcripts due to alternative splicing, translation initiation and termination, as well as regulatory RNAs of the γHVs. A full assessment of the transcriptome requires that our analysis be extended to the virion and exosomes of infected cells since viral and host mRNAs, miRNAs, and other noncoding RNAs seem purposefully incorporated to exert function upon delivery to naïve cells. Understanding the regulation, biogenesis and function of the recently discovered transcripts will extend beyond pathogenesis and oncogenic events to offer key insights for basic RNA processes of the cell.
利用微阵列和深度 RNA 测序方法进行全基因组转录分析的技术进步,被称为转录组,正在迅速扩展我们对γ 疱疹病毒(γHV)遗传内容的理解。由于选择性剪接、翻译起始和终止以及γHV 的调节 RNA,这些大规模的转录分析不断揭示编码转录物的复杂性。要全面评估转录组,我们的分析就必须扩展到感染细胞的病毒粒子和外泌体,因为病毒和宿主的 mRNA、miRNA 和其他非编码 RNA 似乎是有意整合的,以便在递送到未感染的细胞时发挥作用。了解最近发现的转录本的调控、生物发生和功能不仅将超越发病机制和致癌事件,还将为细胞的基本 RNA 过程提供关键见解。