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TATA 结合蛋白与 Gal4 反式激活因子不会协同结合到启动子上。

TATA-binding protein and the Gal4 transactivator do not bind to promoters cooperatively.

作者信息

Xie Y, Sun L, Kodadek T

机构信息

Departments of Internal Medicine and Biochemistry, Ryburn Center for Molecular Cardiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8573, USA.

出版信息

J Biol Chem. 2000 Dec 29;275(52):40797-803. doi: 10.1074/jbc.M007019200.

Abstract

The yeast Gal4 protein, like many activators, binds TATA-binding protein (TBP) directly in vitro. It has been speculated that this protein-protein interaction is important for Gal4p-mediated activation of transcription, but little work has been done to test specific models involving this interaction. In this study, the effect of Gal4p on TBP-TATA binding is addressed. Specifically, it is asked if the Gal4p-TBP interaction can support cooperative binding of the two factors to promoters. It is easy to see how such an event could stimulate transcription, particularly from promoters with a non-consensus TATA box. In vitro, however, a derivative of Gal4p (Gal4-(1-93+768-881)) containing the DNA-binding, dimerization, and activation domains does not bind to promoter DNA cooperatively with either recombinant, purified TBP, or with protein from a yeast crude extract. In vivo, reporter gene experiments using promoters with differing TBP affinities reveal no major Gal4p-mediated stimulation of TBP function from weak TATA boxes, as would be predicted if the proteins bind cooperatively. Furthermore, native Gal4p and a potent Gal4p-based artificial activator lacking a TBP-binding activation domain support similar ratios of transcription from a series of promoters identical except for mutations in the TATA box. It is concluded that Gal4p and TBP do not bind cooperatively to promoters and that this mechanism does not contribute substantially to Gal4p-mediated transcriptional activation.

摘要

与许多激活因子一样,酵母Gal4蛋白在体外可直接结合TATA结合蛋白(TBP)。据推测,这种蛋白质 - 蛋白质相互作用对于Gal4p介导的转录激活很重要,但几乎没有开展相关工作来验证涉及这种相互作用的具体模型。在本研究中,探讨了Gal4p对TBP - TATA结合的影响。具体而言,研究了Gal4p - TBP相互作用是否能支持这两种因子与启动子的协同结合。不难理解这样的事件如何刺激转录,特别是来自具有非共有TATA框的启动子。然而,在体外,含有DNA结合、二聚化和激活结构域的Gal4p衍生物(Gal4-(1 - 93 + 768 - 881))不会与重组纯化的TBP或酵母粗提物中的蛋白质协同结合启动子DNA。在体内,使用具有不同TBP亲和力的启动子进行的报告基因实验表明,从弱TATA框中未发现Gal4p介导的对TBP功能的主要刺激,而如果蛋白质协同结合则会出现这种情况。此外,天然Gal4p和一种缺乏TBP结合激活结构域的基于Gal4p的强效人工激活剂,从一系列除TATA框突变外完全相同的启动子转录时,支持相似的转录比例。得出的结论是,Gal4p和TBP不会与启动子协同结合,并且这种机制对Gal4p介导的转录激活没有实质性贡献。

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