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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Structure-activity relationships of diphenyl-ether as protoporphyrinogen oxidase inhibitors: Insights from computational simulations
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Structure-activity relationships of diphenyl-ether as protoporphyrinogen oxidase inhibitors: Insights from computational simulations

机译:二苯基醚作为原卟啉原氧化酶抑制剂的构效关系:计算仿真的见解

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摘要

Protoporphyrinogen oxidase (PPO, EC 1.3.3.4), which has been identified as a significant target for a great family of herbicides with diverse chemical structures, is the last common enzyme responsible for the seventh step in the biosynthetic pathway to heme and chlorophyll. Among the existing PPO inhibitors, diphenyl-ether is the first commercial family of PPO inhibitors and used as agriculture herbicides for decades. Most importantly, diphenylether inhibitors have been found recently to possess the potential in Photodynamic therapy (PDT) to treat cancer. Herein, molecular dynamics simulations, approximate free energy calculations and hydrogen bond energy calculations were integrated together to uncover the structure-activity relationships of this type of PPO inhibitors. The calculated binding free energies are correlated very well with the values derived from the experimental ki data. According to the established computational models and the results of approximate free energy calculation, the substitution effects at different position were rationalized from the view of binding free energy. Some outlier (e.g. LS) in traditional QSAR study can also be explained reasonably. In addition, the hydrogen bond energy calculation and interaction analysis results indicated that the carbonyl oxygen on position-9 and the NO_2 group at position-8 are both vital for the electrostatic interaction with Arg98, which made a great contribution to the binding free energy. These insights from computational simulations are not only helpful for understanding the molecular mechanism of PPO-inhibitor interactions, but also beneficial to the future rational design of novel promising PPO inhibitors.
机译:原卟啉原氧化酶(PPO,EC 1.3.3.4)已被确定为具有不同化学结构的多种除草剂家族的重要目标,是负责血红素和叶绿素生物合成途径第七步的最后一种常见酶。在现有的PPO抑制剂中,二苯醚是PPO抑制剂的第一个商业家族,几十年来一直用作农业除草剂。最重要的是,最近发现二苯醚抑制剂在光动力疗法(PDT)中具有治疗癌症的潜力。在这里,将分子动力学模拟,近似自由能计算和氢键能计算结合在一起,以揭示这种PPO抑制剂的构效关系。计算的结合自由能与从实验ki数据得出的值非常相关。根据建立的计算模型和近似自由能的计算结果,从束缚自由能的角度合理化了不同位置的取代效应。也可以合理地解释传统QSAR研究中的一些异常值(例如LS)。此外,氢键能的计算和相互作用分析结果表明,位置9上的羰基氧和位置8上的NO_2基团对于与Arg98的静电相互作用均至关重要,这对结合自由能做出了很大贡献。来自计算模拟的这些见解不仅有助于理解PPO-抑制剂相互作用的分子机理,而且还有益于新型有前途的PPO抑制剂的未来合理设计。

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