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Tn7 介导的位点特异性转座快速高效地将外源基因导入细菌人工染色体克隆水痘疫苗。

Rapid and efficient introduction of a foreign gene into bacterial artificial chromosome-cloned varicella vaccine by Tn7-mediated site-specific transposition.

机构信息

Laboratory of Virology and Vaccinology, Division of Biomedical Research, National Institute of Biomedical Innovation, Japan.

出版信息

Virology. 2010 Jun 20;402(1):215-21. doi: 10.1016/j.virol.2010.03.032. Epub 2010 Apr 15.

Abstract

Using a rapid and reliable system based on Tn7-mediated site-specific transposition, we have successfully constructed a recombinant Oka varicella vaccine (vOka) expressing the mumps virus (MuV) fusion protein (F). The backbone of the vector was our previously reported vOka-BAC (bacterial artificial chromosome) genome. We inserted the transposon Tn7 attachment sequence, LacZalpha-mini-attTn7, into the region between ORF12 and ORF13 to generate a vOka-BAC-Tn genome. The MuV-F expressing cassette was transposed into the vOka-BAC genome at the mini-attTn7 transposition site. MuV-F protein was expressed in recombinant virus, rvOka-F infected cells. In addition, the MuV-F protein was cleaved in the rvOka-F infected cells as in MuV-infected cells. The growth of rvOka-F was similar to that of the original recombinant vOka without the F gene. Thus, we show that Tn7-mediated transposition is an efficient method for introducing a foreign gene expression cassette into the vOka-BAC genome as a live virus vector.

摘要

利用基于 Tn7 介导的位点特异性转座的快速可靠系统,我们成功构建了一种表达腮腺炎病毒(MuV)融合蛋白(F)的重组 Oka 水痘疫苗(vOka)。载体的骨架是我们之前报道的 vOka-BAC(细菌人工染色体)基因组。我们将转座子 Tn7 附着序列 LacZalpha-mini-attTn7 插入 ORF12 和 ORF13 之间的区域,以生成 vOka-BAC-Tn 基因组。MuV-F 表达盒通过 mini-attTn7 转座位点转座到 vOka-BAC 基因组中。MuV-F 蛋白在重组病毒 rvOka-F 感染的细胞中表达。此外,MuV-F 蛋白在 rvOka-F 感染的细胞中被切割,就像 MuV 感染的细胞一样。rvOka-F 的生长与没有 F 基因的原始重组 vOka 相似。因此,我们表明 Tn7 介导的转座是将外源基因表达盒作为活病毒载体引入 vOka-BAC 基因组的有效方法。

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