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首页> 外文期刊>Orbital : the Electronic Journal of Chemistry >QSAR-3D e Docking Molecular de Derivados de ácidos N-arilantranílicos com Atividade Inibitória na Enzima Catepsina L
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QSAR-3D e Docking Molecular de Derivados de ácidos N-arilantranílicos com Atividade Inibitória na Enzima Catepsina L

机译:QSAR-3D和具有抑制活性的组织蛋白酶L中的N-芳基邻氨基苯甲酸衍生物的分子对接

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In this work, a molecular modeling study of N-arylanthranilic acid derivatives with inhibitory action on the Cathepsin L enzyme in presented. Firstly, a 3DQSAR study was carried out in order to identify the most important molecular fields, in particular those formed by the C=O, C─O─C and ─NO2 groups, by which the experimental biological activity data were satisfactorily predicted through the correlation (R2 = 0.99) and determination (Q2 = 0.66) coefficient values. In agreement with the noncompetitive inhibition mechanism, the molecular docking calculations revealed that preferential interactions pose outside of the Cathepsin L active site. The correlation between the docking scores and biological activity data are fairly linear, indicating that the strongest and weakest bonded compounds are those with highest and lowest biological activities, respectively.?DOI: http://dx.doi.org/10.17807/orbital.v1i1.714
机译:在这项工作中,提出了对组织蛋白酶L酶具有抑制作用的N-芳基邻氨基苯甲酸衍生物的分子模型研究。首先,为了确定最重要的分子场,特别是由C = O,C-O-C和-NO2基团形成的分子场,进行了3​​DQSAR研究,通过这些分子场可以令人满意地预测实验生物学活性数据。相关性(R2 = 0.99)和确定(Q2 = 0.66)系数值。与非竞争性抑制机制相一致,分子对接计算表明,优先相互作用在组织蛋白酶L活性位点之外发生。对接得分与生物活性数据之间的相关性是线性的,这表明最强和最弱的键合化合物分别是具有最高和最低生物活性的化合物。DOI:http://dx.doi.org/10.17807/orbital。 v1i1.714

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