Holzer G W, Gritschenberger W, Mayrhofer J A, Wieser V, Dorner F, Falkner F G
Biomedical Research Center, Hyland-Immuno, Uferstrasse 15, Orth/Donau, A-2304, Austria.
Virology. 1998 Sep 15;249(1):160-6. doi: 10.1006/viro.1998.9307.
We report the rescue of a defective vaccinia virus, forming the basis for a stringent selection protocol to generate replicating recombinant virus without the need for marker cassettes and selection agents. Plaques of recombinant virus could be isolated solely by their ability to grow in wild-type cells normally supporting the growth of vaccinia virus. All growth-competent clones analyzed contained the gene of interest in the intended genomic locus and displayed foreign gene expression to the same levels as was seen with classical recombinants obtained by insertion into the vaccinia virus thymidine kinase locus. The system is based on a defective vaccinia virus, expressing exclusively early genes, termed eVAC-1, and an insertion plasmid vector providing the essential function, the uracil DNA glycosylase gene. In addition, the defective virus is free of selection and color marker genes, thus also representing a basic vector for the generation of defective recombinants.
我们报道了一种缺陷型痘苗病毒的拯救,这为一种严格的筛选方案奠定了基础,该方案可用于产生复制型重组病毒,而无需标记盒和选择剂。重组病毒的噬菌斑可仅通过其在通常支持痘苗病毒生长的野生型细胞中生长的能力来分离。所有分析的具有生长能力的克隆在预期的基因组位点都含有感兴趣的基因,并且外源基因表达水平与通过插入痘苗病毒胸苷激酶位点获得的经典重组体相同。该系统基于一种仅表达早期基因的缺陷型痘苗病毒,称为eVAC-1,以及一个提供必需功能的插入质粒载体,即尿嘧啶DNA糖基化酶基因。此外,缺陷病毒不含选择和颜色标记基因,因此也代表了产生缺陷重组体的基本载体。