Pfarr D S, Sathe G, Reff M E
DNA. 1985 Dec;4(6):461-7. doi: 10.1089/dna.1985.4.461.
We have developed a highly modular vector, pDSP1, which contains two independent mammalian transcription cassettes. Each cassette contains SV40 early gene regulatory elements controlling the expression of an easily assayable, selectable Escherichia coli marker gene, either galK or xgprt. The regulatory elements of the galK cassette are bounded by multiple unique and nearly unique restriction sites allowing for the easy removal and replacement of either the regulatory sequences or of the galK gene itself. Expression of the marker genes is monitored by transient transfection into mammalian cells followed by filter enzyme assays. Expression of xgprt serves as an internal control and the relative expression of galK/xgprt is used to quantitate modifications made to the vector. We have used this system to analyze many eukaryotic polyadenylation regions as well as several other eukaryotic gene regulatory elements. We have also removed the galK gene and replaced it with other mammalian genes. The entire galK cassette is contained on a Sal I restriction fragment that can be readily removed and placed into a unique Sal I site in one of our Epstein-Barr virus (EBV), bovine papilloma virus (BPV), or BK defective viral stable expression vectors. We believe that pDSP1 is a powerful vector system for studying eukaryotic gene regulation, and in conjunction with our stable expression vectors, it represents a unified system for exploring expression in mammalian cells both transiently and stably.
我们开发了一种高度模块化的载体pDSP1,它包含两个独立的哺乳动物转录盒。每个转录盒都含有SV40早期基因调控元件,用于控制一个易于检测、可选择的大肠杆菌标记基因(galK或xgprt)的表达。galK转录盒的调控元件由多个独特和近乎独特的限制性酶切位点界定,这使得调控序列或galK基因本身能够轻松去除和替换。通过瞬时转染到哺乳动物细胞中,随后进行滤膜酶分析来监测标记基因的表达。xgprt的表达作为内部对照,galK/xgprt的相对表达用于定量对载体所做的修饰。我们已使用该系统分析了许多真核聚腺苷酸化区域以及其他几个真核基因调控元件。我们还去除了galK基因并用其他哺乳动物基因进行了替换。整个galK转录盒包含在一个Sal I限制性酶切片段上,该片段可以很容易地被去除并置于我们的一种爱泼斯坦-巴尔病毒(EBV)、牛乳头瘤病毒(BPV)或BK缺陷病毒稳定表达载体的一个独特Sal I位点中。我们认为pDSP1是用于研究真核基因调控的强大载体系统,并且与我们的稳定表达载体相结合,它代表了一个用于在哺乳动物细胞中瞬时和稳定地探索表达的统一系统。