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一种新型四环素诱导型病毒复制开关。

A novel tetracycline-inducible viral replication switch.

作者信息

Yao F, Eriksson E

机构信息

Brigham and Women's Hospital, and Department of Surgery, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Hum Gene Ther. 1999 Feb 10;10(3):419-27. doi: 10.1089/10430349950018869.

Abstract

With the cloning of DNA encoding the trans-dominant negative mutant form of the HSV-1 origin-binding protein UL9, UL9-C535C, under the control of the tet operator-bearing hCMV major immediate-early promoter (pcmvtetO), this article demonstrates that the tetR-mediated mammalian transcription repression switch (Yao et al., Hum. Gene Ther. 9:1939-1950, 1998) can be converted to a novel HSV-1-specific viral replication switch. Using this viral replication switch, the plaque-forming efficiency of infectious HSV-1 DNA can be reversibly regulated by tetR over 100-fold in transient viral infection assays. Moreover, while less than 0 PFU/ml of HSV-1 was detected from tetR-expressing cells transfected with infectious HSV-1 DNA and plasmid pcmvtetOUL9-C535C in the presence of tetracycline, close to 1000 PFU/ml of HSV-1 was produced when similar experiments were carried out in the absence of tetracycline. The tetracycline treatment led no reduction in HSV-1 synthesis in cells transfected with infectious HSV-1 DNA alone. Taken together, given that the UL9-C535C-associated antiviral activity can be silenced in the context of this HSV-1 replication switch, the establishment of this reversible switch would allow construction of a new generation of HSV-1 recombinants able to inhibit its own replication as well as replication of wild-type virus.

摘要

随着编码单纯疱疹病毒1型(HSV-1)起始结合蛋白UL9的反式显性负突变体形式UL9-C535C的DNA在携带四环素操纵子的人巨细胞病毒主要立即早期启动子(pcmvtetO)控制下的克隆,本文证明四环素阻遏蛋白(tetR)介导的哺乳动物转录抑制开关(Yao等人,《人类基因治疗》9:1939 - 1950,1998年)可转化为一种新型的HSV-1特异性病毒复制开关。利用这种病毒复制开关,在瞬时病毒感染试验中,感染性HSV-1 DNA的噬斑形成效率可被tetR可逆地调节超过100倍。此外,在四环素存在的情况下,从用感染性HSV-1 DNA和质粒pcmvtetOUL9-C535C转染的表达tetR的细胞中检测到的HSV-1低于0 PFU/ml,而在无四环素的情况下进行类似实验时,产生的HSV-1接近1000 PFU/ml。单独用感染性HSV-1 DNA转染的细胞中,四环素处理并未导致HSV-1合成减少。综上所述,鉴于在这种HSV-1复制开关的背景下,与UL9-C535C相关的抗病毒活性可被沉默,这种可逆开关的建立将允许构建新一代能够抑制自身复制以及野生型病毒复制的HSV-1重组体。

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