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首页> 外文期刊>Bulletin of the Korean Chemical Society >QM and Pharmacophore based 3D-QSAR of MK886 Analogues against mPGES-1
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QM and Pharmacophore based 3D-QSAR of MK886 Analogues against mPGES-1

机译:基于QM和Pharmacophore的针对mPGES-1的MK886类似物的3D-QSAR

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摘要

Microsomal prostaglandin E2 synthase(mPGES-1)is a potent target for pain and inflammation.Various QSAR(quantitative structure activity relationship)analyses used to understand the factors affecting inhibitory potency for a series of MK886 analogues.We derived four QSAR models utilizing various quantum mechanical(QM)descriptors.These QM models indicate that steric,electrostatic and hydrophobic interaction can be important factors.Common pharmacophore hypotheses(CPHs)also have studied.The QSAR model derived by best-fitted CPHs considering hydrophobic,negative group and ring effect gave a reasonable result(q2=0.77,r2=0.97 and R_(testset)=0.90).The pharmacophore-derived molecular alignment subsequently used for 3D-QSAR.The CoMFA(Comparative Molecular Field Analysis)and CoMSIA(Comparative Molecular Similarity Indices Analysis)techniques employed on same series of mPGES-1 inhibitors which gives a statistically reasonable result(CoMFA;q2=0.90,r2=0.99.CoMSIA;q2=0.93,r2=1.00).All modeling results(QM-based QSAR,pharmacophore modeling and 3D-QSAR)imply steric,electrostatic and hydrophobic contribution to the inhibitory activity.CoMFA and CoMSIA models suggest the introduction of bulky group around ring B may enhance the inhibitory activity.
机译:微粒体前列腺素E2合酶(mPGES-1)是疼痛和炎症的有效靶标。通过各种QSAR(定量结构活性关系)分析来了解影响一系列MK886类似物抑制潜能的因素。我们利用各种量子论得出了四个QSAR模型这些QM模型表明空间,静电和疏水相互作用可能是重要因素。还研究了通用药效基团假设(CPH)。由最适合CPH推导的QSAR模型考虑了疏水,负基和环效应,给出了结果合理(q2 = 0.77,r2 = 0.97和R_(testset)= 0.90)。随后将药效团衍生的分子比对用于3D-QSAR。在相同系列的mPGES-1抑制剂上使用的技术给出了合理的统计结果(CoMFA; q2 = 0.90,r2 = 0.99.CoMSIA; q2 = 0.93,r2 = 1.00)。所有建模结果ts(基于QM的QSAR,药效团模型和3D-QSAR)暗示了空间,静电和疏水性对抑制活性的贡献。CoMFA和CoMSIA模型表明,在B环周围引入大基团可能会增强抑制活性。

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