Liu X, Constantinescu S N, Sun Y, Bogan J S, Hirsch D, Weinberg R A, Lodish H F
Whitehead Institute for Biomedical Research, Nine Cambridge Center, Massachusetts 02142, USA.
Anal Biochem. 2000 Apr 10;280(1):20-8. doi: 10.1006/abio.2000.4478.
Expression of cloned genes at desired levels in cultured mammalian cells is essential for studying protein function. Controlled levels of expression have been difficult to achieve, especially for cell lines with low transfection efficiency or when expression of multiple genes is required. An internal ribosomal entry site (IRES) has been incorporated into many types of expression vectors to allow simultaneous expression of two genes. However, there has been no systematic quantitative analysis of expression levels in individual cells of genes linked by an IRES, and thus the broad use of these vectors in functional analysis has been limited. We constructed a set of retroviral expression vectors containing an IRES followed by a quantitative selectable marker such as green fluorescent protein (GFP) or truncated cell surface proteins CD2 or CD4. The gene of interest is placed in a multiple cloning site 5' of the IRES sequence under the control of the retroviral long terminal repeat (LTR) promoter. These vectors exploit the approximately 100-fold differences in levels of expression of a retrovirus vector depending on its site of insertion in the host chromosome. We show that the level of expression of the gene downstream of the IRES and the expression level and functional activity of the gene cloned upstream of the IRES are highly correlated in stably infected target cells. This feature makes our vectors extremely useful for the rapid generation of stably transfected cell populations or clonal cell lines expressing specific amounts of a desired protein simply by fluorescent activated cell sorting (FACS) based on the level of expression of the gene downstream of the IRES. We show how these vectors can be used to generate cells expressing high levels of the erythropoietin receptor (EpoR) or a dominant negative Smad3 protein and to generate cells expressing two different cloned proteins, Ski and Smad4. Correlation of a biologic effect with the level of expression of the protein downstream of the IRES provides strong evidence for the function of the protein placed upstream of the IRES.
在培养的哺乳动物细胞中以所需水平表达克隆基因对于研究蛋白质功能至关重要。实现可控的表达水平一直很困难,特别是对于转染效率低的细胞系或需要同时表达多个基因的情况。内部核糖体进入位点(IRES)已被整合到多种类型的表达载体中,以允许同时表达两个基因。然而,对于通过IRES连接的基因在单个细胞中的表达水平尚未进行系统的定量分析,因此这些载体在功能分析中的广泛应用受到了限制。我们构建了一组逆转录病毒表达载体,其中包含一个IRES,后面跟着一个定量选择标记,如绿色荧光蛋白(GFP)或截短的细胞表面蛋白CD2或CD4。感兴趣的基因置于IRES序列5'端的多克隆位点,受逆转录病毒长末端重复序列(LTR)启动子的控制。这些载体利用了逆转录病毒载体根据其在宿主染色体上的插入位点而产生的约100倍的表达水平差异。我们表明,在稳定感染的靶细胞中,IRES下游基因的表达水平与IRES上游克隆基因的表达水平和功能活性高度相关。这一特性使得我们的载体对于通过基于IRES下游基因表达水平的荧光激活细胞分选(FACS)快速生成稳定转染的细胞群体或表达特定量所需蛋白质的克隆细胞系极为有用。我们展示了如何使用这些载体来生成表达高水平促红细胞生成素受体(EpoR)或显性负性Smad3蛋白的细胞,以及生成表达两种不同克隆蛋白Ski和Smad4的细胞。生物学效应与IRES下游蛋白质表达水平的相关性为IRES上游放置的蛋白质的功能提供了有力证据。