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人类巨细胞病毒主要立即早期增强子决定了在低感染复数下允许性细胞中立即早期基因转录和病毒复制的效率。

The human cytomegalovirus major immediate-early enhancer determines the efficiency of immediate-early gene transcription and viral replication in permissive cells at low multiplicity of infection.

作者信息

Isomura Hiroki, Stinski Mark F

机构信息

Department of Microbiology, Carver College of Medicine, University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

J Virol. 2003 Mar;77(6):3602-14. doi: 10.1128/jvi.77.6.3602-3614.2003.

Abstract

To determine the effect of the human cytomegalovirus (CMV) major immediate-early (MIE) enhancer or promoter on the efficiency of viral replication in permissive human cells, we constructed recombinant viruses with their human MIE promoter, enhancer, and promoter plus enhancer replaced with the murine CMV components. After a low multiplicity of infection (MOI) (0.01 PFU/cell), recombinant human CMV with the murine CMV promoter replicated like the wild type but recombinant virus with the murine enhancer replicated less efficiently. Immediate-early (IE) viral protein pIE72 (UL123), early viral protein (UL44), and viral DNA synthesis were significantly decreased. The effect of the human CMV enhancer substitution with the murine CMV enhancer was also demonstrated in different cell types by using recombinant virus with the UL127 promoter, driving the expression of green fluorescent protein (GFP). After an MOI of 1, GFP expression was high with the human CMV enhancer and significantly lower with the murine CMV enhancer. Even though at a high MOI (10 PFU/cell), the murine CMV enhancer was as efficient as the human CMV enhancer for the transcription of IE genes in human foreskin fibroblast cells, at lower MOIs, the murine CMV enhancer was less efficient. Proximal and distal chimeras of the human and murine enhancers also replicated less efficiently at a low MOI and expressed lower levels of GFP from the UL127 promoter. These experiments demonstrate that the entire human CMV enhancer has evolved for the efficient expression of the viral IE and early genes in human cells. Possible functions of the human CMV enhancer and promoter at a low MOI are discussed.

摘要

为了确定人巨细胞病毒(CMV)主要立即早期(MIE)增强子或启动子对其在允许性人类细胞中病毒复制效率的影响,我们构建了重组病毒,将其人MIE启动子、增强子以及启动子加增强子替换为鼠CMV组件。在低感染复数(MOI)(0.01 PFU/细胞)下,具有鼠CMV启动子的重组人CMV像野生型一样复制,但具有鼠增强子的重组病毒复制效率较低。立即早期(IE)病毒蛋白pIE72(UL123)、早期病毒蛋白(UL44)和病毒DNA合成显著减少。通过使用带有UL127启动子驱动绿色荧光蛋白(GFP)表达的重组病毒,在不同细胞类型中也证实了用人CMV增强子替换鼠CMV增强子的效果。在MOI为1时,用人CMV增强子的GFP表达较高,而用鼠CMV增强子的则显著较低。尽管在高MOI(10 PFU/细胞)时,鼠CMV增强子在人包皮成纤维细胞中对IE基因转录的效率与人CMV增强子相同,但在较低MOI时,鼠CMV增强子效率较低。人源和鼠源增强子的近端和远端嵌合体在低MOI时复制效率也较低,并且从UL127启动子表达的GFP水平也较低。这些实验表明,完整的人CMV增强子已经进化以在人类细胞中高效表达病毒IE和早期基因。讨论了人CMV增强子和启动子在低MOI时的可能功能。

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