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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >P53-induced DNA bending: The interplay between p53-ONA and p53-p53 interactions
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P53-induced DNA bending: The interplay between p53-ONA and p53-p53 interactions

机译:P53诱导的DNA弯曲:p53-ONA与p53-p53相互作用之间的相互作用

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摘要

Specific p53 binding-induced DNA bending and its underlying responsible forces are crucial for the understanding of selective transcription activation. Diverse p53-response elements exist in the genome; however, it is not known what determines the DNA bending and to what extent. In order to gain knowledge of the forces that govern the DNA bending, molecular dynamics simulations were performed on a series of p53 core domain tetramer-DNA complexes in which each p53 core domain was bound to a DNA quarter site specifically. By varying the sequence of the central 4-base pairs of each half-site, different DNA bending extents were observed. The analysis showed that the dimer-dimer interactions in p53 were similar for the complexes; on the other hand, the specific interactions between the p53 and DNA, including the interactions of Arg280, Lys 120, and Arg248 with the DNA, varied more significantly. In particular, the Arg280 interactions were better maintained in the complex with the CATG-containing DNA sequence and were mostly lost in the complex with the CTAG-containing DNA sequence. Structural analysis shows that the base pairings for the CATG sequence were stable throughout the simulation trajectory, whereas those for the CTAG sequence were partially dissociated in part of the trajectory, which affected the stability of the nearby Arg280-Gua base interactions. Thus, DNA bending depends*on the balance between the p53 dimer-dimer interactions and p53-DNA interactions, which is in turn related to the DNA sequence and DNA flexibility.
机译:特定的p53结合诱导的DNA弯曲及其潜在的作用力对于理解选择性转录激活至关重要。基因组中存在多种p53反应元件。但是,尚不清楚什么决定DNA弯曲以及在多大程度上弯曲。为了了解控制DNA弯曲的力,对一系列p53核心结构域四聚体-DNA复合物进行了分子动力学模拟,其中每个p53核心结构域均特异性结合到DNA四分位点。通过改变每个半位点的中心4-碱基对的序列,观察到不同的DNA弯曲程度。分析表明,p53中的二聚体-二聚体相互作用与这些复合物相似。另一方面,p53和DNA之间的特异性相互作用(包括Arg280,Lys 120和Arg248与DNA的相互作用)变化更为明显。特别地,Arg280相互作用在含有CATG的DNA序列的复合物中得以更好地保持,而在含有CTAG的DNA序列的复合物中则大部分丢失。结构分析表明,CATG序列的碱基配对在整个模拟轨迹中是稳定的,而CTAG序列的碱基配对在部分轨迹中部分解离,这影响了附近Arg280-Gua碱基相互作用的稳定性。因此,DNA弯曲取决于p53二聚体-二聚体相互作用与p53-DNA相互作用之间的平衡,这又与DNA序列和DNA柔韧性有关。

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