Ausländer Simon, Ketzer Patrick, Hartig Jörg S
Department of Chemistry and Graduate School Chemical Biology, University of Konstanz, Universitätsstrasse 10, 78467 Konstanz, Germany.
Mol Biosyst. 2010 May;6(5):807-14. doi: 10.1039/b923076a. Epub 2010 Feb 26.
The possibility to externally control gene expression is of fundamental importance in both basic and applied life sciences. Although there are some techniques available to regulate expression in mammalian cells, they rely on the presence of ligand-sensing transcription factors, making it necessary to generate cell lines or organisms that stably express these regulatory factors. In recent years, mechanisms relying on direct RNA-ligand interactions for controlling gene expression have been both discovered in nature and engineered artificially. Among the latter, RNA switches relying on catalytically active RNA have been described. In principle, ligand-dependent triggering of mRNA self-cleavage should be a universal mechanism in order to control gene expression in a variety of organisms. Nevertheless, no examples of such aptazymes acting as RNA-based switches have been reported so far in mammalian cells. Here we present the theophylline-induced activation of an mRNA-based hammerhead ribozyme, resulting in an off-switch of gene expression. Starting from an artificial aptazyme switch reported to function in bacteria, we identified and optimized important parameters such as artificial start codons and the communicating sequence connecting ribozyme and aptamer, resulting in an RNA switch that allows for controlling transgenic expression in mammalian cells without the need to express a corresponding ligand-sensing transcription factor.
在基础生命科学和应用生命科学中,实现对基因表达的外部控制都至关重要。尽管有一些技术可用于调控哺乳动物细胞中的基因表达,但这些技术依赖于配体感应转录因子的存在,因此有必要构建稳定表达这些调控因子的细胞系或生物体。近年来,在自然界中发现了一些依赖于直接RNA-配体相互作用来控制基因表达的机制,并通过人工手段进行了改造。在后者中,已经描述了依赖于具有催化活性RNA的RNA开关。原则上,mRNA自我切割的配体依赖性触发应该是一种通用机制,以便在多种生物体中控制基因表达。然而,到目前为止,尚未在哺乳动物细胞中报道过这种作为基于RNA的开关的适体酶的例子。在这里,我们展示了茶碱诱导的基于mRNA的锤头状核酶的激活,从而导致基因表达的关闭开关。从据报道在细菌中起作用的人工适体酶开关出发,我们鉴定并优化了重要参数,如人工起始密码子以及连接核酶和适体的通信序列,从而得到了一种RNA开关,它能够在不需要表达相应配体感应转录因子的情况下控制哺乳动物细胞中的转基因表达。