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In silico based structural analysis of some piperidine analogs as farnesyltransferase inhibitors

机译:在计算机上进行基于哌啶类似物法呢基转移酶抑制剂的哌啶类似物的结构分析

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In silico based QSAR and pharmacophore analyses of a series of piperidine derivatives were performed in order to investigate the structural features of the derivatives responsible for FTase inhibitory activity. The results derived from the QSAR analysis show that the FTase inhibitory activity mediated by the vdW surface area features such as partial charge (PEOE-VSA and Q-VSA) and v-surf (hydrophobic integy moment) of the molecules. The positive contribution of the partial charge descriptors such as Q-VSA-FPNEG and PEOE-VSA-4 reveal that the fractional negative charge on the vdW surface of the molecules and the aqueous solubility (LogS) of the molecules are important for the FTase inhibitory activity. While the hydrophobic integy moment reveals that a clear separation between the hydrophobic and the hydrophilic region in the molecules is important with electrostatic groups (fractional negative charge) for better activity. The pharmacophore analyses of the piperidine derivatives also show that the aromatic, acceptor and donor groups on the molecule favorable for the FTase inhibitory activity.
机译:为了研究负责FTase抑制活性的衍生物的结构特征,对一系列哌啶衍生物进行了基于计算机的QSAR和药效团分析。从QSAR分析得出的结果表明,由vdW表面积介导的FTase抑制活性包括分子的部分电荷(PEOE-VSA和Q-VSA)和v-surf(疏水性整数矩)。 Q-VSA-FPNEG和PEOE-VSA-4等部分电荷描述符的正电荷表明,分子vdW表面的部分负电荷和分子的水溶性(LogS)对于FTase抑制很重要。活动。疏水性整体矩表明,分子中疏水性和亲水性区域之间的清晰分隔对于具有更好的活性的静电基团(分数负电荷)很重要。哌啶衍生物的药效团分析还表明,分子上的芳族,受体和供体基团有利于FTase抑制活性。

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