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果蝇TATA结合蛋白含有一个强大但被掩盖的激活结构域。

The Drosophila TATA binding protein contains a strong but masked activation domain.

作者信息

Um M, Manley J L

机构信息

Department of Biological Sciences, Columbia University, New York, NY 10027, USA.

出版信息

Gene Expr. 2000;9(3):123-32. doi: 10.3727/000000001783992669.

Abstract

TATA binding protein (TBP) is a critical transcription factor involved in transcription by all three RNA polymerases (RNAPs). Studies using in vitro systems and yeast have shown that the C-terminal core domain (CTD) of TBP is necessary and sufficient for many TBP functions, but the significance of the N-terminal domain (NTD) of TBP is still obscure. Here, using transient expression assays in Drosophila Schneider cells, we show that the NTD of Drosophila TBP (dTBP) strongly activates transcription when fused to the GAL4 DNA binding domain (DBD). Strikingly, the activity of the NTD is completely repressed in the context of full-length dTBP. In contrast to the much weaker activation obtained by either full-length dTBP or the dTBP CTD fused to the GAL4 DBD, activation by the NTD is dependent on the presence of GAL4 binding sites and is susceptible to the effects of a dominant negative TFIIB mutant, TFIIB deltaC202, a property observed previously with certain authentic activation domains. Activation by the NTD, but not full-length dTBP or the CTD, seems to be mediated by the action of a strong activation domain, likely a glutamine-rich region. In conclusion, the dTBP NTD can behave as a very strong activator that is masked in the full-length protein, suggesting possible roles for the dTBP NTD in RNAP II-mediated transcription.

摘要

TATA结合蛋白(TBP)是一种关键的转录因子,参与所有三种RNA聚合酶(RNAP)的转录过程。利用体外系统和酵母进行的研究表明,TBP的C末端核心结构域(CTD)对于许多TBP功能而言是必要且充分的,但TBP的N末端结构域(NTD)的重要性仍不清楚。在这里,我们利用果蝇施耐德细胞中的瞬时表达分析表明,果蝇TBP(dTBP)的NTD与GAL4 DNA结合结构域(DBD)融合时能强烈激活转录。令人惊讶的是,在全长dTBP的背景下,NTD的活性被完全抑制。与全长dTBP或与GAL4 DBD融合的dTBP CTD所获得的较弱激活作用相反,NTD的激活作用依赖于GAL4结合位点的存在,并且易受显性负性TFIIB突变体TFIIB deltaC202的影响,这是先前在某些真实激活结构域中观察到的一种特性。NTD的激活作用,而非全长dTBP或CTD的激活作用,似乎是由一个强激活结构域(可能是富含谷氨酰胺的区域)的作用介导的。总之,dTBP NTD可以表现为一种非常强的激活剂,在全长蛋白中被掩盖,这表明dTBP NTD在RNAP II介导的转录中可能发挥作用。

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