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p53激活结构域与全酶TFIID中的TATA盒结合多肽结合,且相邻的p53结构域抑制转录。

The p53 activation domain binds the TATA box-binding polypeptide in Holo-TFIID, and a neighboring p53 domain inhibits transcription.

作者信息

Liu X, Miller C W, Koeffler P H, Berk A J

机构信息

Department of Microbiology and Molecular Genetics, University of California, Los Angeles 90024-1570.

出版信息

Mol Cell Biol. 1993 Jun;13(6):3291-300. doi: 10.1128/mcb.13.6.3291-3300.1993.

Abstract

Antioncogene product p53 is a transcriptional transactivator. To investigate how p53 stimulates transcription, we examined the interaction of p53 with general transcription factors in vitro. We found that p53 binds directly to the human TATA box-binding polypeptide (TBP). We also observed a direct interaction between p53 and purified holo-TFIID, a complex composed of TBP and a group of TBP-associated polypeptides known as TAFs. The p53 binding domain on TBP was mapped to the conserved region of TBP, including residues 220 to 271. The TBP binding domain on p53 was mapped to the p53 activation domain between residues 20 and 57. To analyze the significance of the p53-TBP interaction in p53 transactivation, we compared the ability of Gal4-p53 fusion proteins to bind to TBP in vitro and to activate transcription in transient transfection assays. Fusion proteins which bound to TBP activated transcription, and those that did not bind to TBP did not activate transcription to a detectable level, suggesting that a direct interaction between TBP and p53 is required for p53 transactivation. We also found that inclusion of residues 93 to 160 of p53 in a Gal4-p53 fusion repressed transcriptional activation 100-fold. Consequently, this region of p53 inhibits transcriptional activation by the minimal p53 activation domain. Highest levels of activation were observed with sequences 1 to 92 of p53 fused to Gal4, even though this construct bound to TBP in vitro with an affinity similar to that of other Gal4-p53 fusion proteins. We conclude that TBP binding is necessary for p53 transcriptional activation and that p53 sequences outside the TBP binding domain modulate the level of activation.

摘要

抗癌基因产物p53是一种转录反式激活因子。为了研究p53如何刺激转录,我们在体外检测了p53与通用转录因子的相互作用。我们发现p53直接与人TATA盒结合多肽(TBP)结合。我们还观察到p53与纯化的全酶TFIID之间存在直接相互作用,TFIID是一种由TBP和一组称为TAFs的TBP相关多肽组成的复合物。TBP上的p53结合结构域被定位到TBP的保守区域,包括220至271位氨基酸残基。p53上的TBP结合结构域被定位到20至57位氨基酸残基之间的p53激活结构域。为了分析p53-TBP相互作用在p53反式激活中的意义,我们比较了Gal4-p53融合蛋白在体外与TBP结合的能力以及在瞬时转染实验中激活转录的能力。与TBP结合的融合蛋白激活了转录,而那些不与TBP结合的融合蛋白则没有激活转录至可检测水平,这表明TBP与p53之间的直接相互作用是p53反式激活所必需的。我们还发现,在Gal4-p53融合蛋白中包含p53的93至160位氨基酸残基会使转录激活受到100倍的抑制。因此,p53的这一区域通过最小的p53激活结构域抑制转录激活。当p53的1至92位氨基酸序列与Gal4融合时,观察到了最高水平的激活,尽管该构建体在体外与TBP结合的亲和力与其他Gal4-p53融合蛋白相似。我们得出结论,TBP结合是p53转录激活所必需的,并且TBP结合结构域之外的p53序列调节激活水平。

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