首页> 外文期刊>The FEBS journal >Fast set-up of doxycycline-inducible protein expression in human cell lines with a single plasmid based on Epstein-Barr virus replication and the simple tetracycline repressor
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Fast set-up of doxycycline-inducible protein expression in human cell lines with a single plasmid based on Epstein-Barr virus replication and the simple tetracycline repressor

机译:基于爱泼斯坦-巴尔病毒复制和简单的四环素阻遏物的单个质粒,可快速建立人细胞系中强力霉素诱导的蛋白表达

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We have developed a novel plasmid vector, pEBTetD, for full establishment of doxycycline-inducible protein expression by just a single transfection. pEBTetD contains an Epstein-Barr virus origin of replication for stable and efficient episomal propagation in human cell lines, a cassette for continuous expression of the simple tetracycline repressor, and a cytomegalovirus-type 2 tetracycline operator (tetO2)-tetO2 promoter. As there is no integration of vector into the genome, clonal isolation of transfected cells is not necessary. Cells are thus ready for use 1 week after transfection; this contrasts with 3-12 weeks for other systems. Adequate regulation of protein expression was accomplished by abrogation of mRNA polyadenylation. In northern analysis of seven cDNAs coding for transport proteins, pools of transfected human embryonic kidney 293 cells showed on/off mRNA ratios in the order of 100 : 1. Cell pools were also analyzed for regulation of protein function. With two transport proteins of the plasma membrane, the on/off activity ratios were 24 : 1 and 34 : 1, respectively. With enhanced green fluorescent protein, a 23 : 1 ratio was observed based on fluorescence intensity data from flow cytometry. The unique advantage of our system rests on the unmodified tetracycline repressor, which is less likely, by relocation upon binding of doxycycline, to cause cellular disturbances than chimera of tetracycline repressor and eukaryotic transactivation domains. Thus, in a comprehensive comparison of on- and off-states, a steady cellular background is provided. Finally, in contrast to a system based on Flp recombinase, the set-up of our system is inherently reliable.
机译:我们已经开发了一种新型质粒载体pEBTetD,仅通过一次转染即可完全建立强力霉素诱导的蛋白表达。 pEBTetD包含一个在人细胞系中稳定,有效地游离传播的爱泼斯坦-巴尔病毒复制起点,一个用于连续表达简单四环素阻遏物的盒,以及一个巨细胞病毒2型四环素操纵子(tetO2)-tetO2启动子。由于没有将载体整合到基因组中,因此无需克隆分离转染细胞。因此,转染后1周即可使用细胞。而其他系统则需要3到12周的时间。通过消除mRNA多腺苷酸化来实现对蛋白质表达的充分调节。在对编码运输蛋白的七个cDNA进行Northern分析时,转染的人胚肾293细胞池的开/关mRNA比率约为100:1。还对细胞池中的蛋白质功能进行了分析。对于质膜的两种转运蛋白,开/关活性比分别为24:1和34:1。使用增强的绿色荧光蛋白,根据来自流式细胞仪的荧光强度数据观察到23:1的比例。我们系统的独特优势在于未修饰的四环素阻遏物,与四环素阻遏物和真核生物反式激活域的嵌合体相比,通过与强力霉素结合后发生重新定位,它不太可能引起细胞紊乱。因此,在通态和关态的全面比较中,提供了稳定的细胞背景。最后,与基于Flp重组酶的系统相​​比,我们系统的设置本质上是可靠的。

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