Suppr超能文献

利用四环素诱导(Tet-on)短发夹RNA(shRNA)或互补DNA(cDNA)表达来生成稳定的人类细胞系。

Generation of stable human cell lines with Tetracycline-inducible (Tet-on) shRNA or cDNA expression.

作者信息

Gomez-Martinez Marta, Schmitz Debora, Hergovich Alexander

机构信息

UCL Cancer Institute, UK.

出版信息

J Vis Exp. 2013 Mar 5(73):e50171. doi: 10.3791/50171.

Abstract

A major approach in the field of mammalian cell biology is the manipulation of the expression of genes of interest in selected cell lines, with the aim to reveal one or several of the gene's function(s) using transient/stable overexpression or knockdown of the gene of interest. Unfortunately, for various cell biological investigations this approach is unsuitable when manipulations of gene expression result in cell growth/proliferation defects or unwanted cell differentiation. Therefore, researchers have adapted the Tetracycline repressor protein (TetR), taken from the E. coli tetracycline resistance operon(1), to generate very efficient and tight regulatory systems to express cDNAs in mammalian cells(2,3). In short, TetR has been modified to either (1) block initiation of transcription by binding to the Tet-operator (TO) in the promoter region upon addition of tetracycline (termed Tet-off system) or (2) bind to the TO in the absence of tetracycline (termed Tet-on system) (Figure 1). Given the inconvenience that the Tet-off system requires the continuous presence of tetracycline (which has a half-life of about 24 hr in tissue cell culture medium) the Tet-on system has been more extensively optimized, resulting in the development of very tight and efficient vector systems for cDNA expression as used here. Shortly after establishment of RNA interference (RNAi) for gene knockdown in mammalian cells(4), vectors expressing short-hairpin RNAs (shRNAs) were described that function very similar to siRNAs(5-11). However, these shRNA-mediated knockdown approaches have the same limitation as conventional knockout strategies, since stable depletion is not feasible when gene targets are essential for cellular survival. To overcome this limitation, van de Wetering et al.(12) modified the shRNA expression vector pSUPER(5) by inserting a TO in the promoter region, which enabled them to generate stable cell lines with tetracycline-inducible depletion of their target genes of interest. Here, we describe a method to efficiently generate stable human Tet-on cell lines that reliably drive either inducible overexpression or depletion of the gene of interest. Using this method, we have successfully generated Tet-on cell lines which significantly facilitated the analysis of the MST/hMOB/NDR cascade in centrosome(13,14) and apoptosis signaling(15,16). In this report, we describe our vectors of choice, in addition to describing the two consecutive manipulation steps that are necessary to efficiently generate human Tet-on cell lines (Figure 2). Moreover, besides outlining a protocol for the generation of human Tet-on cell lines, we will discuss critical aspects regarding the technical procedures and the characterization of Tet-on cells.

摘要

哺乳动物细胞生物学领域的一种主要方法是在选定的细胞系中操纵感兴趣基因的表达,目的是通过瞬时/稳定过表达或敲低感兴趣的基因来揭示该基因的一种或几种功能。不幸的是,对于各种细胞生物学研究,当基因表达的操纵导致细胞生长/增殖缺陷或不必要的细胞分化时,这种方法并不适用。因此,研究人员采用了来自大肠杆菌四环素抗性操纵子的四环素阻遏蛋白(TetR),以构建非常高效且严格的调控系统,用于在哺乳动物细胞中表达cDNA。简而言之,TetR已被修饰为:(1)在添加四环素后通过与启动子区域的四环素操纵子(TO)结合来阻断转录起始(称为Tet-off系统);或(2)在没有四环素的情况下与TO结合(称为Tet-on系统)(图1)。鉴于Tet-off系统需要持续存在四环素(其在组织细胞培养基中的半衰期约为24小时)带来的不便,Tet-on系统得到了更广泛的优化,从而开发出了如本文所用的用于cDNA表达的非常严格且高效的载体系统。在哺乳动物细胞中建立用于基因敲低的RNA干扰(RNAi)后不久,就描述了表达短发夹RNA(shRNA)的载体,其功能与小干扰RNA(siRNA)非常相似。然而,这些shRNA介导的敲低方法与传统的基因敲除策略具有相同的局限性,因为当基因靶点对细胞存活至关重要时,稳定的基因敲除是不可行的。为了克服这一局限性,van de Wetering等人通过在启动子区域插入一个TO对shRNA表达载体pSUPER进行了修饰,这使他们能够生成对感兴趣的靶基因具有四环素诱导性敲低作用的稳定细胞系。在这里,我们描述了一种有效生成稳定的人Tet-on细胞系的方法,该细胞系能够可靠地驱动感兴趣基因的诱导性过表达或敲低。使用这种方法,我们成功地生成了Tet-on细胞系,这显著促进了对中心体中MST/hMOB/NDR级联反应(13,14)和凋亡信号传导(15,16)的分析。在本报告中,除了描述有效生成人Tet-on细胞系所需的两个连续操作步骤(图2)外,我们还介绍了我们选择的载体。此外,除了概述生成人Tet-on细胞系的方案外,我们还将讨论有关技术程序和Tet-on细胞表征的关键方面。

相似文献

引用本文的文献

本文引用的文献

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验