Mukumoto F, Hirose S, Imaseki H, Yamazaki K
School of Agricultural Sciences, Nagoya University, Japan.
Plant Mol Biol. 1993 Dec;23(5):995-1003. doi: 10.1007/BF00021814.
We have analyzed the DNA sequence requirements for the functioning of TATA elements by examining the transcriptional activities associated with 24 promoters, including representatives of each of the 21 point mutations in the consensus sequence from plants, TATATATA, in a HeLa in vitro system and in a chimeric in vitro system in which human TATA-binding protein (hTBP) was replaced by purified TBP of Arabidopsis (aTBP-1). Although the relative transcriptional activities varied among these promoters, both systems gave virtually identical results. Among the mutant TATA elements, those with the sequences TAGAGATA and GAGAGAGA had undetectable activity. The rest had activities that ranged from 7% to 130% of the activity associated with the consensus element. These results suggest the functional conservation of TBP between plants and animals.
我们通过检测与24个启动子相关的转录活性,分析了TATA元件发挥功能所需的DNA序列要求。这些启动子包括来自植物共有序列TATATATA中21个点突变的每个类型的代表,实验在HeLa体外系统以及一种嵌合体外系统中进行。在该嵌合体外系统中,人TATA结合蛋白(hTBP)被拟南芥纯化的TBP(aTBP-1)所取代。尽管这些启动子之间的相对转录活性有所不同,但两个系统得出的结果几乎相同。在突变的TATA元件中,具有TAGAGATA和GAGAGAGA序列的元件活性无法检测到。其余元件的活性为共有元件相关活性的7%至130%。这些结果表明植物和动物之间TBP的功能具有保守性。