Petrik Dustin T, Schmitt Kimberly P, Stinski Mark F
Interdisciplinary Graduate Program in Molecular Biology, Carver College of Medicine, University of Iowa, Iowa City, Iowa 52242, USA.
J Virol. 2006 Apr;80(8):3872-83. doi: 10.1128/JVI.80.8.3872-3883.2006.
Human cytomegalovirus (HCMV) expresses several proteins that manipulate normal cellular functions, including cellular transcription, apoptosis, immune response, and cell cycle control. The IE2 gene, which is expressed from the HCMV major immediate-early (MIE) promoter, encodes the IE86 protein. IE86 is a multifunctional protein that is essential for viral replication. The functions of IE86 include transactivation of cellular and viral early genes, negative autoregulation of the MIE promoter, induction of cell cycle progression from G0/G1 to G1/S, and arresting cell cycle progression at the G1/S transition in p53-positive human foreskin fibroblast (HFF) cells. Mutations were introduced into the IE2 gene in the context of the viral genome using bacterial artificial chromosomes (BACs). From these HCMV BACs, a recombinant virus (RV) with a single amino acid substitution in the IE86 protein was isolated that replicates slower and to lower titers than wild-type HCMV. HFF cells infected with the Q548R RV undergo cellular DNA synthesis and do not arrest at any point in the cell cycle. The Q548R RV is able to negatively autoregulate the MIE promoter, transactivate viral early genes, activate cellular E2F-responsive genes, and produce infectious virus. This is the first report of a viable recombinant HCMV that is unable to inhibit cellular DNA synthesis in infected HFF cells.
人巨细胞病毒(HCMV)表达多种操纵正常细胞功能的蛋白质,包括细胞转录、细胞凋亡、免疫反应和细胞周期调控。从HCMV主要立即早期(MIE)启动子表达的IE2基因编码IE86蛋白。IE86是一种对病毒复制至关重要的多功能蛋白质。IE86的功能包括激活细胞和病毒早期基因、对MIE启动子进行负向自我调节、诱导细胞周期从G0/G1期进入G1/S期以及在p53阳性的人包皮成纤维细胞(HFF)中使细胞周期在G1/S期转换处停滞。利用细菌人工染色体(BACs)在病毒基因组背景下对IE2基因进行突变。从这些HCMV BACs中,分离出一种在IE86蛋白中有单个氨基酸替代的重组病毒(RV),其复制速度比野生型HCMV慢且滴度更低。感染Q548R RV的HFF细胞进行细胞DNA合成,并且在细胞周期的任何点都不会停滞。Q548R RV能够对MIE启动子进行负向自我调节、激活病毒早期基因、激活细胞E2F反应性基因并产生感染性病毒。这是关于一种在感染的HFF细胞中无法抑制细胞DNA合成的有活力的重组HCMV的首次报道。