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CREB结合蛋白通过多个结构域激活转录。

CREB-binding protein activates transcription through multiple domains.

作者信息

Swope D L, Mueller C L, Chrivia J C

机构信息

Department of Pharmacological and Physiological Sciences, Saint Louis University School of Medicine, St. Louis, Missouri 63104, USA.

出版信息

J Biol Chem. 1996 Nov 8;271(45):28138-45. doi: 10.1074/jbc.271.45.28138.

Abstract

CREB-binding protein (CBP) functions as a coactivator molecule for a number of transcription factors including CREB, c-Fos, c-Jun, c-Myb, and several nuclear receptors. Although binding sites for these factors within CBP have been identified, the regions of CBP responsible for transcriptional activation are unknown. In this report, we show that the N-terminal half of CBP is sufficient for activation of CREB-mediated transcription and that this region contains a strong transcriptional activation domain (TAD). Both deletion of this TAD or sequestering of factors that the TAD binds using a squelching assay were found to greatly decrease the ability of CBP to activate CREB-mediated transcription. In vivo studies by others have shown that p300/CBP associates with TBP; using an in vitro approach, we show the N-terminal TAD binds TBP. We also examined the ability of the C terminus of CBP to activate transcription using GAL-CBP chimeras. With this approach, we identified two C-terminal TADs located adjacent to the c-Fos binding site. In previous studies, cAMP-dependent protein kinase A (PKA) increased the transcriptional activity of a GAL full-length CBP chimera in F9 cells, and of the C terminus in PC-12 cells. Here, we demonstrate that PKA also increased the ability of the N-terminal TADs of CBP to activate transcription in PC-12 but not F9 or COS-7 cells, suggesting that this PKA-responsiveness is cell type-specific.

摘要

CREB结合蛋白(CBP)作为多种转录因子的共激活分子发挥作用,这些转录因子包括CREB、c-Fos、c-Jun、c-Myb以及几种核受体。尽管已确定CBP内这些因子的结合位点,但负责转录激活的CBP区域尚不清楚。在本报告中,我们表明CBP的N端一半足以激活CREB介导的转录,并且该区域包含一个强大的转录激活域(TAD)。发现删除该TAD或使用抑制试验隔离TAD结合的因子均会大大降低CBP激活CREB介导转录的能力。其他人的体内研究表明p300/CBP与TBP相关联;使用体外方法,我们表明N端TAD与TBP结合。我们还使用GAL-CBP嵌合体研究了CBP C端激活转录的能力。通过这种方法,我们在紧邻c-Fos结合位点处鉴定出两个C端TAD。在先前的研究中,cAMP依赖性蛋白激酶A(PKA)增加了F9细胞中GAL全长CBP嵌合体以及PC-12细胞中C端的转录活性。在此,我们证明PKA也增加了CBP的N端TAD在PC-12细胞中激活转录的能力,但在F9或COS-7细胞中则不然,这表明这种PKA反应性具有细胞类型特异性。

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