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通过新型单链DNA表达载体在细胞内产生DNA酶。

Intracellular production of DNA enzyme by a novel single-stranded DNA expression vector.

作者信息

Chen Y, McMicken H W

机构信息

CytoGenix, Inc., Houston, TX 77099, USA.

出版信息

Gene Ther. 2003 Sep;10(20):1776-80. doi: 10.1038/sj.gt.3302068.

Abstract

A set of single-stranded DNA (ssDNA) expression vectors, which can generate intracellularly any ssDNA or oligodeoxynucleotide (ODN) molecules, have been developed in our laboratory. Studies from our laboratory as well as our collaborators demonstrated that these ssDNA expression vectors are capable of producing: (1) 10-23 DNA enzyme for downregulating c-raf kinase gene expression and (2) triplex-forming oligodeoxynucleotide (TFO) for inducing genomic recombination. We report here the construction of a new version of ssDNA expression vector. A beta-galactosidase (beta-gal) reporter gene was used as a test target so that the alteration of gene expression can be easily measured using beta-gal activity assay. We designed a 10-23 DNA enzyme molecule that specifically cleaves beta-gal mRNA at protein translation starting site (ATG). Using a cell-free RNA cleavage assay, we confirmed that this DNA enzyme molecule could effectively cleave beta-gal RNA. However, a single substitution from T to G in the catalytic domain of this DNA enzyme molecule abolished its RNA cleavage activity. We also constructed an expression vector that can generate DNA enzyme molecules in cells. A549 lung carcinoma cells were cotransfected with both DNA enzyme expression vector and the beta-gal reporter gene. Compared to the cells that were transfected with the mutated DNA enzyme expression vector, significant reduction of beta-gal gene expression (up to 76%) was observed in the cells transfected with DNA enzyme expression vector as indicated by the protein expression level as well as its enzyme activity. These results further suggest that the ssDNA expression vector has potential applications in the study of gene function and target validation.

摘要

我们实验室已开发出一套单链DNA(ssDNA)表达载体,其可在细胞内产生任何单链DNA或寡脱氧核苷酸(ODN)分子。我们实验室以及我们合作者的研究表明,这些ssDNA表达载体能够产生:(1)用于下调c-raf激酶基因表达的10-23 DNA酶,以及(2)用于诱导基因组重组的三链形成寡脱氧核苷酸(TFO)。我们在此报告一种新版本的ssDNA表达载体的构建。使用β-半乳糖苷酶(β-gal)报告基因作为测试靶点,以便能够通过β-gal活性测定轻松测量基因表达的变化。我们设计了一种10-23 DNA酶分子,其在蛋白质翻译起始位点(ATG)特异性切割β-gal mRNA。通过无细胞RNA切割测定,我们证实该DNA酶分子可有效切割β-gal RNA。然而,该DNA酶分子催化结构域中从T到G的单个替换消除了其RNA切割活性。我们还构建了一种可在细胞中产生DNA酶分子的表达载体。将DNA酶表达载体和β-gal报告基因共转染A549肺癌细胞。与转染突变DNA酶表达载体的细胞相比,如蛋白质表达水平及其酶活性所示,在转染DNA酶表达载体的细胞中观察到β-gal基因表达显著降低(高达76%)。这些结果进一步表明,ssDNA表达载体在基因功能研究和靶点验证方面具有潜在应用。

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