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In siiico screening and study of novel ERK2 inhibitors using 3D QSAR, docking and molecular dynamics

机译:在Siiico筛选和使用3D QSAR,对接和分子动力学的新型ERK2抑制剂的研究

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摘要

ERK2 is a dual specificity protein kinase, part of the Ras/Raf/MEK/ERK signal transduction cascade. It forms an interesting target for inhibition based on its relationship with cell proliferation and oncogenesis. A 3D QSAR pharmacophore model (Hypo1) with high correlation (r=0.938) was developed for ERK2 ATP site on the basis of experimentally known inhibitors. The model included three hydrogen bonds, and one hydrophobic site. Assessment of Hypol through Fisher randomization, cost analysis, leave one out method and decoy test suggested that the model can reliably detect ERK2 inhibitors. Hypol has been used for virtual screening of potential inhibitors from ZINC, Drug Bank, NCI, Maybridge and Chembank databases. Using Hypol as a query, databases have been interrogated for compounds who meet the pharmacophore features. The resulting hit compounds were subject to docking and analysis. Docking and molecular dynamics analysis showed that in order to achieve a higher potency compounds have to interact with catalytic site, glycine rich loop, Hinge region, Gatekeeper region and ATP site entrance residues. We also identified catalytic site and Glycine rich loop as important regions to bind by molecules for better potency and selectivity.
机译:ERK2是双重特异性蛋白激酶,RAS / RAF / MEK / ERK信号转导级联的一部分。基于其与细胞增殖和肿瘤发生的关系,形成了抑制的有趣目标。基于实验已知的抑制剂,为ERK2 ATP网站开发了具有高相关(R = 0.938)的3D QSAR药物模型(R = 0.938)。该模型包括三种氢键和一个疏水部位。通过Fisher随机化评估Hypol通过Fisher随机化,成本分析,留出一个Out方法和诱饵测试表明该模型可以可靠地检测ERK2抑制剂。 Hevol已被用于虚拟筛查来自锌,药物库,NCI,Maybridge和Chembank数据库的潜在抑制剂。使用Hypol作为查询,数据库已被询问满足Pharmacophore功能的化合物。得到的麦片化合物须进行对接和分析。对接和分子动力学分析表明,为了实现更高的效力化合物,必须与催化位点相互作用,甘氨酸富含环,铰链区,盖克地区和ATP位点残留物。我们还将催化部位和甘氨酸富含环鉴定为重要地区,分子结合以获得更好的效力和选择性。

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