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转录共激活因子p300介导的p53的DNA依赖性乙酰化作用

DNA-dependent acetylation of p53 by the transcription coactivator p300.

作者信息

Dornan David, Shimizu Harumi, Perkins Neil D, Hupp Ted R

机构信息

Cancer Research UK Laboratories, Department of Molecular & Cellular Pathology, University of Dundee, Dundee DD1 9SY, Scotland, United Kingdom.

出版信息

J Biol Chem. 2003 Apr 11;278(15):13431-41. doi: 10.1074/jbc.M211460200. Epub 2002 Dec 23.

Abstract

Reconstitution of the stages in the assembly of the p300.p53 transcription complex has identified a novel type of DNA-dependent regulation of p300-catalyzed acetylation. Phosphorylation at the CHK2 site (Ser(20)) in the N-terminal activation domain of p53 stabilized p300 binding. The phosphopeptide binding activity of p300 was mapped in vitro to two domains: the C-terminal IBiD domain and the N-terminal IHD domain (IBiD homology domain). The IHD or IBiD minidomains can bind to the p53 activation domain in vivo as determined using the mammalian two-hybrid VP16-GAL4 luciferase reporter assay. The IHD and IBiD minidomains of p300 also functioned as dominant negative inhibitors of p53-dependent transcription in vivo. Upon examining the affects of p300 binding on substrate acetylation, we found that the p53 consensus site DNA promotes a striking increase in p53 acetylation in vitro. Co-transfection into cells of the p53 gene and plasmid DNA containing the consensus DNA binding site of p53 activated DNA-dependent acetylation of p53 in vivo. The phosphopeptide binding activity of p300 is critical for DNA-dependent acetylation, as p53 acetylation was inhibited by phospho-Ser(20) peptides. Consensus site DNA-dependent acetylation of p53 stabilized the p300.p53 protein complex, whereas basal acetylation of p53 by p300 in the presence of nonspecific DNA resulted in p300 dissociation. These data identify at least three distinct stages in the assembly of a p300.p53 complex: 1) p300 docking to the activation domain of p53 via the IBiD and/or IHD domains; 2) DNA-dependent acetylation of p53; and 3) stabilization of the p300.p53(AC) complex after acetylation. The ability of DNA to act as an allosteric ligand to activate substrate acetylation identifies a conformational constraint that can be placed on the p300-acetylation reaction that is likely to be an amplification signal and influence protein-protein contacts at a promoter.

摘要

p300.p53转录复合物组装过程中各阶段的重构,确定了一种新型的p300催化乙酰化的DNA依赖性调控。p53 N端激活域中CHK2位点(Ser(20))的磷酸化稳定了p300的结合。p300的磷酸肽结合活性在体外定位于两个结构域:C端的IBiD结构域和N端的IHD结构域(IBiD同源结构域)。使用哺乳动物双杂交VP16-GAL4荧光素酶报告基因检测法确定,IHD或IBiD小结构域在体内可与p53激活域结合。p300的IHD和IBiD小结构域在体内也作为p53依赖性转录的显性负抑制剂发挥作用。在研究p300结合对底物乙酰化的影响时,我们发现p53共有位点DNA在体外可显著促进p53乙酰化增加。将p53基因与含有p53共有DNA结合位点的质粒DNA共转染到细胞中,可在体内激活p53的DNA依赖性乙酰化。p300的磷酸肽结合活性对DNA依赖性乙酰化至关重要,因为p53乙酰化受到磷酸化的Ser(20)肽的抑制。p53的共有位点DNA依赖性乙酰化稳定了p300.p53蛋白复合物,而在非特异性DNA存在下p300对p53的基础乙酰化导致p300解离。这些数据确定了p300.p53复合物组装过程中至少三个不同阶段:1)p300通过IBiD和/或IHD结构域与p53激活域对接;2)p53的DNA依赖性乙酰化;3)乙酰化后p300.p53(AC)复合物的稳定。DNA作为变构配体激活底物乙酰化的能力,确定了一种可能施加于p300乙酰化反应的构象限制,这可能是一种放大信号,并影响启动子处的蛋白质-蛋白质相互作用。

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