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p53-induced DNA bending and twisting: p53 tetramer binds on the outer side of a DNA loop and increases DNA twisting

机译:p53诱导的DNA弯曲和扭曲:p53四聚体结合在DNA环的外侧并增加DNA扭曲

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摘要

DNA binding activity of p53 is crucial for its tumor suppressor function. Our recent studies have shown that four molecules of the DNA binding domain of human p53 (p53DBD) bind the response elements with high cooperativity and bend the DNA. By using A-tract phasing experiments, we find significant differences between the bending and twisting of DNA by p53DBD and by full-length human wild-type (wt) p53. Our data show that four subunits of p53DBD bend the DNA by 32–36°, whereas wt p53 bends it by 51–57°. The directionality of bending is consistent with major groove bends at the two pentamer junctions in the consensus DNA response element. More sophisticated phasing analyses also demonstrate that p53DBD and wt p53 overtwist the DNA response element by ≈35° and ≈70°, respectively. These results are in accord with molecular modeling studies of the tetrameric complex. Within the constraints imposed by the protein subunits, the DNA can assume a range of conformations resulting from correlated changes in bend and twist angles such that the p53–DNA tetrameric complex is stabilized by DNA overtwisting and bending toward the major groove at the CATG tetramers. This bending is consistent with the inherent sequence-dependent anisotropy of the duplex. Overall, the four p53 moieties are placed laterally in a staggered array on the external side of the DNA loop and have numerous interprotein interactions that increase the stability and cooperativity of binding. The novel architecture of the p53 tetrameric complex has important functional implications including possible p53 interactions with chromatin.
机译:p53的DNA结合活性对其肿瘤抑制功能至关重要。我们最近的研究表明,人p53的DNA结合结构域的四个分子(p53DBD)以高协同性结合反应元件并使DNA弯曲。通过使用A阶段定相实验,我们发现p53DBD和全长人野生型(wt)p53在DNA弯曲和扭曲之间存在显着差异。我们的数据表明,p53DBD的四个亚基使DNA弯曲32–36°,而wt p53使其弯曲51–57°。弯曲的方向性与共有DNA响应元件中两个五聚体连接处的主要凹槽弯曲一致。更复杂的定相分析还表明,p53DBD和wt p53分别使DNA响应元件扭曲≈35°和≈70°。这些结果与四聚体复合物的分子模型研究一致。在蛋白质亚基施加的限制内,DNA可以假设一系列构象,这些构象是由弯曲和扭曲角的相关变化而产生的,因此p53-DNA四聚体复合物可以通过DNA过度扭曲并朝CATG四聚体的主沟弯曲来稳定。这种弯曲与双链体固有的依赖序列的各向异性是一致的。总体而言,四个p53部分以交错阵列的方式横向排列在DNA环的外侧,并具有许多蛋白间相互作用,从而增加了结合的稳定性和协同作用。 p53四聚体复合物的新型结构具有重要的功能含义,包括可能的p53与染色质相互作用。

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