Boyce Thompson Institute at Cornell University, Ithaca, New York, USA.
J Virol. 2013 Jun;87(11):6391-405. doi: 10.1128/JVI.00194-13. Epub 2013 Mar 27.
Baculoviruses are important insect pathogens that have been developed as protein expression vectors in insect cells and as transduction vectors for mammalian cells. They have large double-stranded DNA genomes containing approximately 156 tightly spaced genes, and they present significant challenges for transcriptome analysis. In this study, we report the first comprehensive analysis of AcMNPV transcription over the course of infection in Trichoplusia ni cells, by a combination of strand-specific RNA sequencing (RNA-Seq) and deep sequencing of 5' capped transcription start sites and 3' polyadenylation sites. We identified four clusters of genes associated with distinctive patterns of mRNA accumulation through the AcMNPV infection cycle. A total of 218 transcription start sites (TSS) and 120 polyadenylation sites (PAS) were mapped. Only 29 TSS were associated with a canonical TATA box, and 14 initiated within or near the previously identified CAGT initiator motif. The majority of viral transcripts (126) initiated within the baculovirus late promoter motif (TAAG), and late transcripts initiated precisely at the second position of the motif. Analysis of 3' ends showed that 92 (77%) of the 3' PAS were located within 30 nucleotides (nt) downstream of a consensus termination signal (AAUAAA or AUUAAA). A conserved U-rich region was found approximately 2 to 10 nt downstream of the PAS for 58 transcripts. Twelve splicing events and an unexpectedly large number of antisense RNAs were identified, revealing new details of possible regulatory mechanisms controlling AcMNPV gene expression. Combined, these data provide an emerging global picture of the organization and regulation of AcMNPV transcription through the infection cycle.
杆状病毒是一类重要的昆虫病原体,已被开发为昆虫细胞中的蛋白表达载体和哺乳动物细胞中的转导载体。它们具有包含约 156 个紧密间隔基因的大双链 DNA 基因组,这给转录组分析带来了巨大挑战。在这项研究中,我们通过组合使用链特异性 RNA 测序(RNA-Seq)和对 5'加帽转录起始位点和 3'多聚腺苷酸化位点的深度测序,首次全面分析了 AcMNPV 在 Trichoplusia ni 细胞中的感染过程中的转录情况。我们鉴定了四个与 AcMNPV 感染周期中 mRNA 积累模式相关的基因簇。总共鉴定了 218 个转录起始位点(TSS)和 120 个多聚腺苷酸化位点(PAS)。只有 29 个 TSS 与典型的 TATA 框相关,并且 14 个 TSS 在先前鉴定的 CAGT 起始子基序内或附近起始。大多数病毒转录本(126 个)在杆状病毒晚期启动子基序(TAAG)内起始,晚期转录本精确地在基序的第二个位置起始。3'端分析表明,92 个(77%)3'PAS 位于一致终止信号(AAUAAA 或 AUUAAA)下游 30 个核苷酸(nt)内。在 58 个转录本中,大约 2 到 10 nt 下游的 PAS 发现了一个保守的 U 丰富区。鉴定了 12 个剪接事件和数量异常多的反义 RNA,揭示了可能控制 AcMNPV 基因表达的调控机制的新细节。总的来说,这些数据提供了 AcMNPV 转录在感染周期中的组织和调控的新兴全局图景。