Schläppi M, Raina R, Fedoroff N
Carnegie Institution of Washington, Department of Embryology, Baltimore, MD 21210, USA.
Plant Mol Biol. 1996 Nov;32(4):717-25. doi: 10.1007/BF00020212.
TnpA is a multifunctional DNA binding protein encoded by the maize Suppressor-mutator (Spm) transposable element. TnpA is required for transposition and is a repressor of the unmethylated Spm promoter. While analyzing protein domains using a yeast GAL4-based hybrid system in transiently transformed tobacco cells, we found that TnpA represses the > 10-fold transcriptional activation observed when the GAL4 DNA-binding domain is used alone. By contrast, compared to the backgroundless TnpA DNA-binding domain alone, 33- to 45-fold activation of the Spm promoter was observed when the VP16 activation domain was fused to it. TnpA-binding sites, but no TATA box, were required for transcription activation. Among the TnpA deletion derivatives tested, those retaining the coding sequences for the DNA-binding and protein dimerization domains gave the highest level of transcription activation when fused with the VP16 activation domain. The TnpA gene and TnpA-binding sites in the short Spm promoter therefore provide a novel, highly sensitive single-hybrid system for identifying and studying plant transcription activation domains in plant cells.
TnpA是一种由玉米抑制-突变体(Spm)转座元件编码的多功能DNA结合蛋白。TnpA是转座所必需的,并且是未甲基化的Spm启动子的阻遏物。在瞬时转化的烟草细胞中使用基于酵母GAL4的杂交系统分析蛋白质结构域时,我们发现当单独使用GAL4 DNA结合结构域时,TnpA会抑制观察到的超过10倍的转录激活。相比之下,与单独的无背景TnpA DNA结合结构域相比,当VP16激活结构域与之融合时,观察到Spm启动子有33至45倍的激活。转录激活需要TnpA结合位点,但不需要TATA框。在测试的TnpA缺失衍生物中,那些保留DNA结合和蛋白质二聚化结构域编码序列的衍生物在与VP16激活结构域融合时给出了最高水平的转录激活。因此,短Spm启动子中的TnpA基因和TnpA结合位点为在植物细胞中鉴定和研究植物转录激活结构域提供了一种新型、高度敏感的单杂交系统。