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An Alternative Method to Facilitate cDNA Cloning for Expression Studies in Mammalian Cells by Introducing Positive Blue White Selection in Vaccinia Topoisomerase I-Mediated Recombination

机译:通过引入阳性蓝白选择在牛痘拓扑异构酶I介导的重组中促进哺乳动物细胞表达研究的cDNA克隆的另一种方法

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摘要

One of the most basic techniques in biomedical research is cDNA cloning for expression studies in mammalian cells. Vaccinia topoisomerase I-mediated cloning (TOPO cloning by Invitrogen) allows fast and efficient recombination of PCR-amplified DNAs. Among TOPO vectors, a pcDNA3.1 directional cloning vector is particularly convenient, since it can be used for expression analysis immediately after cloning. However, I found that the cloning efficiency was reduced when RT-PCR products were used as inserts (about one-quarter). Since TOPO vectors accept any PCR products, contaminating fragments in the insert DNA create negative clones. Therefore, I designed a new mammalian expression vector enabling positive blue white selection in Vaccinia topoisomerase I–mediated cloning. The method utilized a short nontoxic LacZα peptide as a linker for GFP fusion. When cDNAs were properly inserted into the vector, minimal expression of the fusion proteins in E. coli (harboring lacZΔM15) resulted in formation of blue colonies on X-gal plates. This method improved both cloning efficiency (75%) and directional cloning (99%) by distinguishing some of the negative clones having non-cording sequences, since these inserts often disturbed translation of lacZα. Recombinant plasmids were directly applied to expression studies using GFP as a reporter. Utilization of the P2A peptide allowed for separate expression of GFP. In addition, the preparation of Vaccinia topoisomerase I-linked vectors was streamlined, which consisted of successive enzymatic reactions with a single precipitation step, completing in 3 hr. The arrangement of unique restriction sites enabled further modification of vector components for specific applications. This system provides an alternative method for cDNA cloning and expression in mammalian cells.
机译:生物医学研究中最基本的技术之一是在哺乳动物细胞中进行表达研究的cDNA克隆。牛痘拓扑异构酶I介导的克隆(通过Invitrogen进行TOPO克隆)可实现PCR扩增DNA的快速有效重组。在TOPO载体中,pcDNA3.1定向克隆载体特别方便,因为它可以在克隆后立即用于表达分析。但是,我发现当将RT-PCR产物用作插入片段时,克隆效率会降低(大约四分之一)。由于TOPO载体接受任何PCR产物,因此插入DNA中的污染片段会产生阴性克隆。因此,我设计了一种新的哺乳动物表达载体,能够在痘苗拓扑异构酶I介导的克隆中实现阳性蓝白选择。该方法利用短而无毒的LacZα肽作为GFP融合的连接子。当将cDNA正确插入载体后,融合蛋白在大肠杆菌中的最低表达(携带lacZΔM15)导致在X-gal平板上形成蓝色菌落。该方法通过区分一些具有非编码序列的阴性克隆,从而提高了克隆效率(75%)和定向克隆(99%),因为这些插入片段通常会干扰lacZα的翻译。将重组质粒直接用于以GFP为报告基因的表达研究。利用P2A肽可以单独表达GFP。此外,简化了牛痘拓扑异构酶I连接的载体的制备过程,该过程由连续的酶促反应和一个沉淀步骤组成,并在3小时内完成。独特的限制性酶切位点的排列使得可以针对特定应用进一步修饰载体成分。该系统提供了在哺乳动物细胞中cDNA克隆和表达的另一种方法。

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  • 作者

    Hiroshi Udo;

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  • 年(卷),期 -1(10),9
  • 年度 -1
  • 页码 e0139349
  • 总页数 17
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