Mitchell Dora P, Savaryn John P, Moorman Nathaniel J, Shenk Thomas, Terhune Scott S
Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA.
J Virol. 2009 Oct;83(19):10187-97. doi: 10.1128/JVI.00396-09. Epub 2009 Jul 22.
We have identified a spliced transcript that contains sequences from the HCMV UL29 and UL28 open reading frames. It contains amino-terminal UL29 sequences followed by UL28 sequences, and it includes a poly(A) signal derived from the 3'-untranslated region following the UL26 open reading frame. UL29/28 RNA is expressed with early kinetics, and a virus containing a FLAG epitope inserted at the amino terminus of UL29 expressed a tagged approximately 79-kDa protein, pUL29/28, that was detected at 6 h postinfection. The virus also expressed a less-abundant tagged 41-kDa protein, which corresponds in size to a protein that could be produced by translation of an unspliced UL29/28 transcript. Consistent with this prediction, both unspliced and spliced UL29/28 transcript was present in RNA isolated from polysomes. FLAG-tagged protein from the UL29/28 locus accumulated within nuclear viral replication centers during the early phase of infection. Late after infection it was present in the cytoplasm as well, and the protein was present and resistant to proteinase treatment in partially purified preparations of viral particles. Disruption of the UL29/28 locus by mutation resulted in a 10-fold decrease in the levels of DNA replication along with a similar reduction in virus yield. Quantitative reverse transcription-PCR analysis revealed an approximately 2-fold decrease in immediate-early gene expression at 4 to 10 h postinfection compared to the wild-type virus, and transient expression of pUL29/28 activated the major immediate-early promoter. Our results argue that the UL29/28 locus contributes to activation of immediate-early gene expression.
我们鉴定出一种剪接转录本,其包含来自人巨细胞病毒(HCMV)UL29和UL28开放阅读框的序列。它包含UL29的氨基末端序列,其后是UL28序列,并且它包括一个源自UL26开放阅读框之后的3'-非翻译区的聚腺苷酸(poly(A))信号。UL29/28 RNA以早期动力学表达,并且一种在UL29氨基末端插入了FLAG表位的病毒表达了一种带标签的约79 kDa蛋白,即pUL29/28,在感染后6小时可检测到。该病毒还表达了一种丰度较低的带标签的41 kDa蛋白,其大小与未剪接的UL29/28转录本翻译产生的蛋白相对应。与这一预测一致,未剪接和剪接的UL29/28转录本都存在于从多核糖体分离的RNA中。来自UL29/28基因座的FLAG标签蛋白在感染早期积聚在核病毒复制中心内。感染后期它也存在于细胞质中,并且在病毒颗粒的部分纯化制剂中该蛋白存在且对蛋白酶处理具有抗性。通过突变破坏UL29/28基因座导致DNA复制水平下降10倍,同时病毒产量也有类似程度的降低。定量逆转录PCR分析显示,与野生型病毒相比,感染后4至10小时即刻早期基因表达下降约2倍,并且pUL29/28的瞬时表达激活了主要即刻早期启动子。我们的结果表明,UL29/28基因座有助于即刻早期基因表达的激活。