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首页> 外文期刊>Molecular BioSystems >Implementation of pseudoreceptor-based pharmacophore queries in the prediction of probable protein targets: explorations in the protein structural profile of Zea mays
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Implementation of pseudoreceptor-based pharmacophore queries in the prediction of probable protein targets: explorations in the protein structural profile of Zea mays

机译:预测可能的蛋白质靶标中基于伪受体的药效团查询的实现:玉米的蛋白质结构概况的探索

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摘要

Molecular docking plays an important role in the protein target identification by prioritizing probable druggable proteins using docking energies. Due to the limitations of docking scoring schemes, there arises a need for structure-based approaches to acquire confidence in theoretical binding affinities. In this direction, we present here a receptor (protein)-based approach to predict probable protein targets using a small molecule of interest. We adopted a reverse approach wherein the ligand pharmacophore features were used to decipher interaction complementary amino acids of protein cavities (a pseudoreceptor) and expressed as queries to match the cavities or binding sites of the protein dataset. These pseudoreceptor -based pharmacophore queries were used to estimate total probabilities of each protein cavity thereby representing the ligand binding efficiency of the protein. We applied this approach to predict 3 experimental protein targets among 28 Zea mays structural data using 3 co-crystallized ligands as inputs and compared its effectiveness using conventional docking results. We suggest that the combination of total probabilities and docking energies increases the confidence in prioritizing probable protein targets using docking methods. These prediction hypotheses were further supported by DrugScoreX (DSX) pair potential calculations and molecular dynamic simulations.
机译:分子对接通过使用对接能优先考虑可能的可药物化蛋白质,在蛋白质靶标鉴定中发挥重要作用。由于对接计分方案的局限性,因此需要基于结构的方法来获得对理论结合亲和力的信心。在这个方向上,我们在这里介绍一种基于受体(蛋白质)的方法来使用感兴趣的小分子预测可能的蛋白质靶标。我们采用了一种反向方法,其中配体药效团特征用于破译蛋白质腔体(假受体)的相互作用互补氨基酸,并表示为与蛋白质数据集的腔体或结合位点相匹配的查询。这些基于假受体的药效团查询被用来估计每个蛋白质腔的总概率,从而代表蛋白质的配体结合效率。我们使用这种方法来预测使用3个共结晶的配体作为输入的28个玉米结构数据中的3个实验蛋白靶标,并使用常规对接结果比较了其有效性。我们建议总概率和对接能量的组合会增加使用对接方法确定可能的蛋白质靶标的信心。这些预测假设得到了DrugScoreX(DSX)对电位计算和分子动力学模拟的进一步支持。

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  • 来源
    《Molecular BioSystems》 |2014年第7期|1833-1844|共12页
  • 作者单位

    Department of Bioinformatics, Applied Botany Centre (ABC), University School of Sciences, Gujarat University, Navrangpura, Ahmedabad - 380009, Gujarat, India;

    School of Chemical Sciences, Central University of Gujarat, Sector-30,Gandhinagar-382030, India;

    Department of Bioinformatics, Applied Botany Centre (ABC), University School of Sciences, Gujarat University, Navrangpura, Ahmedabad - 380009, Gujarat, India;

    School of Chemical Sciences, Central University of Gujarat, Sector-30,Gandhinagar-382030, India;

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