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Simulations of mutant p53 DNA binding domains reveal a novel druggable pocket

机译:突变p53 DNA结合域的模拟揭示了一个新的可药物化的口袋

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摘要

The DNA binding domain (DBD) of the tumor suppressor p53 is the site of several oncogenic mutations. A subset of these mutations lowers the unfolding temperature of the DBD. Unfolding leads to the exposure of a hydrophobic β-strand and nucleates aggregation which results in pathologies through loss of function and dominant negative/gain of function effects. Inspired by the hypothesis that structural changes that are associated with events initiating unfolding in DBD are likely to present opportunities for inhibition, we investigate the dynamics of the wild type (WT) and some aggregating mutants through extensive all atom explicit solvent MD simulations. Simulations reveal differential conformational sampling between the WT and the mutants of a turn region (S6–S7) that is contiguous to a known aggregation-prone region (APR). The conformational properties of the S6–S7 turn appear to be modulated by a network of interacting residues. We speculate that changes that take place in this network as a result of the mutational stress result in the events that destabilize the DBD and initiate unfolding. These perturbations also result in the emergence of a novel pocket that appears to have druggable characteristics. FDA approved drugs are computationally screened against this pocket.
机译:肿瘤抑制因子p53的DNA结合域(DBD)是几个致癌突变的位点。这些突变的一个子集降低了DBD的展开温度。展开导致疏水性β链和核聚集的暴露,其通过功能丧失和显性负/功能获得效应而导致病理。受以下假设的启发:与DBD中展开的事件相关的结构变化可能会提供抑制机会,我们通过广泛的所有原子显式溶剂MD模拟研究了野生型(WT)和一些聚集突变体的动力学。模拟结果表明,野生型和转向区(S6-S7)的突变体之间的差异构象采样与已知的易发聚合区(APR)相邻。 S6-S7分子的构象性质似乎是由相互作用残基网络调节的。我们推测,由于突变压力而在此网络中发生的变化会导致破坏DBD稳定并启动展开的事件。这些扰动还导致出现了看起来具有可吸毒特性的新型口袋。 FDA批准的药物将通过计算机对这一口袋进行筛选。

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