Hesse J E, Nickol J M, Lieber M R, Felsenfeld G
Proc Natl Acad Sci U S A. 1986 Jun;83(12):4312-6. doi: 10.1073/pnas.83.12.4312.
We describe a method for studying transient gene expression in primary avian erythroid cells that involves controlled osmotic shock, followed by DNA transfection using DEAE-dextran. Cells treated in this way reproducibly express high levels of chloramphenicol acetyltransferase (CAT) when transfected with a plasmid having the cat gene coupled to an appropriate viral promoter. An observed correlation between levels of CAT expression and extent of hemoglobin release during controlled shock makes it possible to choose optimum conditions for expression in erythroid cells at various stages of embryonic development. Using these techniques, we have investigated the effect on CAT expression of fusing to the cat gene various portions of the chicken adult beta-globin (beta A) gene. We show that in 9-day or 12-day embryonic erythrocytes, the promoter activity of the 5' flanking region of the beta A gene (in the absence of any viral promoters) is strongly stimulated by a downstream sequence, located in the region 110-588 base pairs on the 3' side of the poly(A) signal, that acts as an enhancer. Its activity is reduced in 5-day embryonic cells and absent in primary chicken fibroblasts and mouse L cells, suggesting that this transient expression system will be useful in studying developmentally regulated globin gene expression.
我们描述了一种在原代鸟类红细胞中研究瞬时基因表达的方法,该方法包括控制渗透压休克,然后使用DEAE-葡聚糖进行DNA转染。当用一个带有与适当病毒启动子相连的cat基因的质粒转染时,以这种方式处理的细胞可重复地高水平表达氯霉素乙酰转移酶(CAT)。在控制休克期间观察到的CAT表达水平与血红蛋白释放程度之间的相关性,使得有可能为胚胎发育各个阶段的红细胞选择最佳表达条件。利用这些技术,我们研究了将鸡成年β-珠蛋白(βA)基因的不同部分与cat基因融合对CAT表达的影响。我们表明,在9天或12天的胚胎红细胞中,βA基因5'侧翼区域(在没有任何病毒启动子的情况下)的启动子活性受到位于多聚腺苷酸信号3'侧110 - 588碱基对区域的下游序列的强烈刺激,该序列作为增强子发挥作用。其活性在5天的胚胎细胞中降低,在原代鸡成纤维细胞和小鼠L细胞中不存在,这表明这种瞬时表达系统将有助于研究发育调控的珠蛋白基因表达。