Prigozy T, Dalrymple K, Kedes L, Shuler C
Institute of Genetic Medicine, University of Southern California School of Medicine, Los Angeles 90033.
Somat Cell Mol Genet. 1993 Mar;19(2):111-22. doi: 10.1007/BF01233527.
The striated muscle of the tongue provides a readily accessible site for the introduction of DNA expression vectors. Parameters were established to use the striated muscle of the tongue as a model system for the examination of gene expression following the direct injection of DNA constructs bearing gene promoter sequences controlling the expression of reporter genes. Plasmid expression vectors were used that contained either constitutive or muscle-specific promoters directing the transcription of reporter genes. Chloramphenicol acetyltransferase (CAT), luciferase, and beta-galactosidase (lacZ) were used as the reporter genes to detect the promoter-specific expression of the injected DNA. The expression of the injected plasmids was directly correlated with the mass of injected DNA and the time of incubation following the injection. Maximal levels of reporter gene expression were observed seven days after the injection, and the expression was maintained for more than two months following injection. Simultaneous injection of two individual expression vectors bearing either CAT or luciferase reporter genes resulted in a dose-dependent level of expression for each of the plasmids. The linearity of the coexpression provided a means to normalize DNA uptake and analyze promoter efficiency. The troponin C-fast enhancer linked to its own promoter directed significantly more CAT expression than an enhancerless SV40 promoter-CAT plasmid, demonstrating that different promoter strengths could be determined in the mouse tongue muscle in vivo. This model system represents a convenient means to approach the functional analysis of muscle gene promoters in vivo.
舌部的横纹肌为DNA表达载体的导入提供了一个易于操作的部位。我们确定了相关参数,以便将舌部横纹肌用作模型系统,用于在直接注射携带控制报告基因表达的基因启动子序列的DNA构建体后检测基因表达。使用了质粒表达载体,其中包含组成型或肌肉特异性启动子来指导报告基因的转录。氯霉素乙酰转移酶(CAT)、荧光素酶和β-半乳糖苷酶(lacZ)被用作报告基因,以检测注射的DNA的启动子特异性表达。注射质粒的表达与注射的DNA量和注射后的孵育时间直接相关。注射后七天观察到报告基因表达的最高水平,并且在注射后表达持续了两个多月。同时注射携带CAT或荧光素酶报告基因的两个单独的表达载体,导致每个质粒的表达水平呈剂量依赖性。共表达的线性提供了一种标准化DNA摄取并分析启动子效率的方法。与无增强子的SV40启动子-CAT质粒相比,与自身启动子相连的肌钙蛋白C快速增强子显著促进了更多的CAT表达,这表明可以在小鼠舌肌体内确定不同的启动子强度。该模型系统代表了一种在体内对肌肉基因启动子进行功能分析的便捷方法。