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首页> 外文期刊>Cancer biology & therapy >Facilitated search for specific genomic targets by p53 C-terminal basic DNA binding domain.
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Facilitated search for specific genomic targets by p53 C-terminal basic DNA binding domain.

机译:通过p53 C端基本DNA结合结构域促进特定基因组靶标的搜索。

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摘要

p53 is a unique DNA binding protein with two distinct DNA binding domains, the central domain for sequence-specific DNA binding and the C-terminal basic DNA binding domain (BD domain) for structure-specific DNA binding. In contrast to the apparent inhibitory effect of the BD domain on p53 binding to sequence-specific DNA in vitro, here we demonstrate that the BD domain enhances p53 binding to the endogenous p21(Waf1) promoter and mediates rapid transactivation of p21.(Waf1) This paradox is resolved by the observation that the BD domain is required for rapid binding to non-sequence-specific genomic DNA (NS-DNA) as evident from global chromatin immunoprecipitation analysis of p53 DNA binding in vivo. This finding provides the first in vivo evidence from a eukaryotic system to support binding to NS-DNA as an intermediate step in searching for specific sites as proposed by von Hippel and Berg. Furthermore, we speculate that binding to structure-specific DNA by the BD domain is a mechanism for p53 rapid binding to genomic DNA from its free state to facilitate the search for its target sites in the genome undergoing genotoxic stress.
机译:p53是一种独特的DNA结合蛋白,具有两个不同的DNA结合结构域,即用于序列特异性DNA结合的中央结构域和用于结构特异性DNA结合的C端基本DNA结合结构域(BD结构域)。与体外对BD结构域对p53结合序列特异性DNA的明显抑制作用相反,在此我们证明BD结构域增强了p53与内源性p21(Waf1)启动子的结合并介导p21的快速反式激活。(Waf1)通过对体内p53 DNA结合的整体染色质免疫沉淀分析可以明显看出,BD结构域是快速结合非序列特异性基因组DNA(NS-DNA)所必需的,从而解决了这一矛盾。这一发现提供了来自真核系统的第一个体内证据,以支持与NS-DNA的结合,这是von Hippel和Berg提出的寻找特定位点的中间步骤。此外,我们推测通过BD域与结构特异性DNA的结合是p53从其自由状态快速与基因组DNA迅速结合的机制,以利于在遭受基因毒性胁迫的基因组中寻找其靶位点。

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