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In silico insights into prediction and analysis of potential novel pyrrolopyridine analogs against human MAPKAPK-2: a new SAR-based hierarchical clustering approach

机译:对人类MAPKAPK-2潜在的新型吡咯并吡啶类似物进行预测和分析的计算机真知灼见:一种基于SAR的新分层聚类方法

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摘要

In the present study, we have focused on to elucidate potential bioactive pyrrolopyridine (PYP23) analogs against human mitogen-activated protein kinase-activated protein kinase-2 (MK-2). Here, in silico methods and computational systems biology tools were used as rational strategies to predict novel PYP23 analogs against the MK-2. Initially, crystal structure (PDB-ID: 2P3G) consists steriochemical conflicts were rectified by structure-optimization approaches using the Modeller program, and a new optimized-high resolution model was generated. The stereochemical qualities of the predicted MK-2 model were judged; these showed that the model was reliable for docking assessments. SAR-based bioactivity analysis showed that among the 197 datasets only 15 candidates contained bioactivity data and were accepted as probable MK-2 inhibitors. Virtual screening and docking strategies of dataset compounds against the ligand-binding domain of MK-2 recognized 13 composites containing high binding affinity than known compounds. Furthermore, the comparative structure clustering, in silico toxicogenomics and QSAR-based anticancer properties prediction approaches were successful in the recognition of five best potential compounds such as 60118340, 60118338, 60117736, 60118473 and 60118322, which have great anticancer and drug-likeness with non-toxicity class indices. Leu70, Glu139, Leu141, Glu145, Glu190, Thr206 and Asp207 were found to be novel hotspot residues prominently involved in H-bonds framing with ligands. Interestingly, they have shown better molecular similarity with known bioactive PYP inhibitors. Thus, predicted five compounds can useful as possible chemotherapeutic agents for MK-2 and show similar molecular actions like known PYP inhibitors. Overall, these streamlined new methods may have great potential to reveal possible ligands toward other molecular targets and biomarkers.Electronic supplementary materialThe online version of this article (10.1007/s13205-018-1405-x) contains supplementary material, which is available to authorized users.
机译:在本研究中,我们专注于阐明针对人促分裂原激活的蛋白激酶激活的蛋白激酶2(MK-2)的潜在生物活性吡咯并吡啶(PYP23)类似物。在这里,计算机方法和计算机系统生物学工具被用作预测针对MK-2的新型PYP23类似物的合理策略。最初,使用Modeller程序通过结构优化方法纠正了包含立体化学冲突的晶体结构(PDB-ID:2P3G),并生成了一个新的优化高分辨率模型。判断预测的MK-2模型的立体化学性质;这些表明该模型对于对接评估是可靠的。基于SAR的生物活性分析表明,在197个数据集中,只有15个候选对象包含生物活性数据,被认为是可能的MK-2抑制剂。针对MK-2配体结合域的数据集化合物的虚拟筛选和对接策略可识别出13种复合物,这些复合物比已知化合物具有更高的结合亲和力。此外,比较结构聚类,计算机毒理基因组学和基于QSAR的抗癌特性预测方法成功地识别了5种最佳潜在化合物,如60118340、60118338、60117736、60118473和60118322,它们具有很好的抗癌性和与非药物类似的药物。 -毒性等级指数。 Leu 70 ,Glu 139 ,Leu 141 ,Glu 145 ,Glu 190 ,发现Thr 206 和Asp 207 是新型热点残基,主要与配体的H键成帧有关。有趣的是,它们与已知的生物活性PYP抑制剂表现出更好的分子相似性。因此,预测的五种化合物可用作MK-2的可能的化学治疗剂,并显示出与已知PYP抑制剂相似的分子作用。总体而言,这些简化的新方法可能具有揭示其他分子靶标和生物标记物可能的配体的巨大潜力。电子补充材料本文的在线版本(10.1007 / s13205-018-1405-x)包含补充材料,授权用户可以使用。 。

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