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首页> 外文期刊>Nucleic acids research >A self-initiating eukaryotic transient gene expression system based on cotransfection of bacteriophage T7 RNA polymerase and DNA vectors containing a T7 autogene
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A self-initiating eukaryotic transient gene expression system based on cotransfection of bacteriophage T7 RNA polymerase and DNA vectors containing a T7 autogene

机译:基于噬菌体T7 RNA聚合酶和含有T7自体基因的DNA载体共转染的自启动真核生物瞬时基因表达系统

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A novel cytoplasmic gene expression system has been developed. This system differs from other expression systems in that it relies on the co-delivery of plasmid DNA and T7 RNA polymerase (RNAP) during trans-fection. The plasmid contains a T7 RNAP gene driven by the T7 promoter (T7 autogene) and a functional/reporter gene driven by another T7 promoter (T7T7/T7-gene construct). Once this DNA - enzyme complex is introduced into eukaryotic cells, the transcription of the T7 RNAP and the functional/reporter genes is initiated by the co-delivered T7 RNAP. The T7 RNAP, which is responsible for the initiation and maintenance of expression of both T7 and functional/reporter genes, is replenished by translation of newly synthesized T7 mRNA. This T7 system was designed in such a manner that the expression of the functional/reporter genes can occur in the cytoplasm and does not require any nuclear involvement. When transfected by either a pT7T7/T7Luc or a pT7T7/T7hGH plasmids with the co-introduced T7 RNAP, mouse L cells were found to express high levels of luciferase immediately after transfection, apparently due to the cytoplasmic gene expression; the expression of human growth hormone (hGH) could be sustained for at least 6 days. Both T7 and hGH mRNA were expressed by the cells transfected with pT7T7/T7hGH. These results suggest that this cytoplasmic expression system may be used for certain targets of somatic gene therapy.
机译:已经开发了新型的细胞质基因表达系统。该系统与其他表达系统的不同之处在于,它依赖于转染过程中质粒DNA和T7 RNA聚合酶(RNAP)的共同传递。质粒包含由T7启动子驱动的T7 RNAP基因(T7自体基因)和由另一个T7启动子驱动的功能/报告基因(T7T7 / T7基因构建体)。一旦将这种DNA-酶复合物引入真核细胞,T7 RNAP和功能/报告基因的转录就由共同提供的T7 RNAP引发。通过新合成的T7 mRNA的翻译来补充负责T7和功能/报告基因的表达的启动和维持的T7 RNAP。该T7系统以这样的方式设计,使得功能/报告基因的表达可以在细胞质中发生并且不需要任何核参与。当通过pT7T7 / T7Luc或pT7T7 / T7hGH质粒与共引入的T7 RNAP一起转染时,发现小鼠L细胞在转染后立即表达高水平的萤光素酶,这显然是由于胞质基因的表达。人类生长激素(hGH)的表达可以持续至少6天。 T7和hGH mRNA均由pT7T7 / T7hGH转染的细胞表达。这些结果表明该细胞质表达系统可用于体细胞基因治疗的某些靶标。

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