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首页> 外文期刊>Bioorganic and Medicinal Chemistry >A DFT-based QSARs study of protoporphyrinogen oxidase inhibitors: phenyl triazolinones.
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A DFT-based QSARs study of protoporphyrinogen oxidase inhibitors: phenyl triazolinones.

机译:基于DFT的QSARs研究原卟啉原氧化酶抑制剂:苯基三唑啉酮。

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The equilibrium geometries, electronic structures, and electrostatic potentials of a series of substituted phenyl triazolinones, a kind of important protoporphyrinogen oxidase (Protox) inhibitors, had been investigated using density functional theory (DFT) method at the B3LYP/6-31G(d,p) basis set. The quantum chemical descriptors, such as energy difference (DeltaE) between the lowest unoccupied molecular orbital and the highest occupied molecular orbital, electrophilic and nucleophilic frontier electron density (f(i)(E) and f(i)(N)), and net atomic charge (Q(i)), were computed at the same DFT level. Based on these useful quantum chemical descriptors, the quantitative structure-activity relationships was carried out and the results showed that descriptors, Q(C(11)), [Formula: see text] , [Formula: see text] , [Formula: see text] , [Formula: see text] , and DeltaE, were most likely to be responsible for the in vitro biological activity and the greenhouse pre-emergence activity of phenyl triazolinones. The descriptors accounted for 77-86% of the variation in the in vitro biological activity among the herbicidal phenyl triazolinone analogs 1-26 (except compounds 19 and 20). The results of the regression analysis showed that the activity was parabolically related not only with the descriptor [Formula: see text] , but also with the descriptor [Formula: see text] . The optimum values of the terms [Formula: see text] and [Formula: see text] were about 11.15 and 0, respectively. Studies also showed that compound 19 exhibiting the highest in vitro activity mimicked the three-ring portion of protoporphyrinogen IX (Protogen). The present work had proved that the DFT-based quantum chemical descriptors could lead to the better correlation relationship than that the PM3-based electronic descripors, therefore, DFT-based QSARs could be expected to help facilitate the design of additional substituted phenyl triazolinone derivatives of Protox inhibitors with good biological activity.
机译:已在B3LYP / 6-31G上使用密度泛函理论(DFT)方法研究了一系列取代的苯基三唑啉酮(一种重要的原卟啉原氧化酶(Protox)抑制剂)的平衡几何结构,电子结构和静电势。 p)基础集。量子化学描述符,例如最低未占据分子轨道与最高占据分子轨道之间的能差(DeltaE),亲电和亲核前沿电子密度(f(i)(E)和f(i)(N)),以及净原子电荷(Q(i))是在相同的DFT级别下计算的。基于这些有用的量子化学描述子,进行了定量构效关系,结果表明,描述子Q(C(11)),[化学式:见正文],[化学式:见正文],[化学式:参见]正文],[公式:查看正文]和DeltaE最有可能是苯基三唑啉酮的体外生物活性和温室温室萌芽前活性的原因。这些描述词占除草苯基三唑啉酮类似物1-26(化合物19和20除外)体外生物活性变化的77-86%。回归分析的结果表明,该活动不仅与描述符[公式:参见文本]呈抛物线相关,而且与描述符[公式:参见文本]也有抛物线相关。术语[公式:参见文本]和[公式:参见文本]的最佳值分别约为11.15和0。研究还表明,表现出最高体外活性的化合物19模仿原卟啉原IX(Protogen)的三环部分。目前的工作已经证明,基于DFT的量子化学描述子比基于PM3的电子描述子可以导致更好的相关关系,因此,可以预期基于DFT的QSARs有助于设计更多的取代苯基三唑啉酮衍生物。具有良好生物学活性的Protox抑制剂。

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