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用于在哺乳动物细胞中稳定表达的高通量双顺反子逆转录病毒载体:探索STAT5过表达的生物学效应

High-throughput gateway bicistronic retroviral vectors for stable expression in mammalian cells: exploring the biologic effects of STAT5 overexpression.

作者信息

Royer Yohan, Menu Catherine, Liu Xuedong, Constantinescu Stefan N

机构信息

Ludwig Institute for Cancer Research, Brussels, Belgium.

出版信息

DNA Cell Biol. 2004 Jun;23(6):355-65. doi: 10.1089/104454904323145245.

Abstract

Stable expression of cloned genes in mammalian cells has been achieved in the past by retroviral transduction using bicistronic retroviral vectors. In these vectors, the use of an Internal Ribosome Entry Site (IRES) allows simultaneous expression of a protein of interest and a fluorescence marker. However, traditional cDNA cloning in these vectors is often difficult. Here we report the construction of a high-throughput retroviral vector using the Invitrogen "Gateway" Cloning system. The Gateway recombination sequences (attR) flanking the ccdB and chloramphenicol resistance genes were incorporated at the 5' of the IRES of pMX-IRES-GFP, -CD2, or -CD4 vectors. Through recombination, these vectors can acquire cDNAs coding for genes of interest, which will result in simultaneous expression of the recombined gene and the marker protein. We constructed Gateway bicistronic vectors coding for the erythropoietin receptor (EpoR) and GFP, CD4, or CD2. Epo-dependent proliferation assays and analysis of Jak2-dependent EpoR cell-surface expression showed that these vectors were able to function indistinguishable from the original pMX-EpoR-IRES-GFP. The expression levels of the genes cloned upstream the IRES were proportional to the levels of expression of GFP, which was cloned downstream of the IRES. We used the same approach and generated Ba/F3 cells that overexpress STAT5a, STAT5b, or a constitutively active form of STAT5. Overexpression of STAT5 lead to a significant effect on the intrinsic adherence to plastic of these cells, but did not change their proliferative responses to cytokines. We discuss possible applications of the new vectors for cell signaling and expression cloning.

摘要

过去,通过使用双顺反子逆转录病毒载体进行逆转录病毒转导,已在哺乳动物细胞中实现了克隆基因的稳定表达。在这些载体中,内部核糖体进入位点(IRES)的使用允许同时表达感兴趣的蛋白质和荧光标记。然而,在这些载体中进行传统的cDNA克隆通常很困难。在此,我们报告了使用Invitrogen“Gateway”克隆系统构建高通量逆转录病毒载体。在pMX-IRES-GFP、-CD2或-CD4载体的IRES的5'端掺入了位于ccdB和氯霉素抗性基因两侧的Gateway重组序列(attR)。通过重组,这些载体可以获得编码感兴趣基因的cDNA,这将导致重组基因和标记蛋白的同时表达。我们构建了编码促红细胞生成素受体(EpoR)和GFP、CD4或CD2的Gateway双顺反子载体。Epo依赖性增殖测定以及对Jak2依赖性EpoR细胞表面表达的分析表明,这些载体的功能与原始的pMX-EpoR-IRES-GFP无异。克隆到IRES上游的基因的表达水平与克隆到IRES下游的GFP的表达水平成比例。我们采用相同的方法,生成了过表达STAT5a、STAT5b或组成型活性形式的STAT5的Ba/F3细胞。STAT5的过表达对这些细胞对塑料的内在黏附产生了显著影响,但并未改变它们对细胞因子的增殖反应。我们讨论了新载体在细胞信号传导和表达克隆中的可能应用。

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