Refinement and 3D-QSAR Studies of Inhibitors of Cyclophilin A Containing Amide Linker.

Feng Fan, Jin Zhu, Shuaishuai Ni, Jiagao Cheng, Yun Tang, Congmin Kang, Jian Li, Hualiang Jiang
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引用次数: 3

Abstract

Cyclophilin A (CypA) is a ubiquitous cellular enzyme playing essential role in many biological processes, and the discovery of CypA inhibitor is now of special interest in the treatment of immunological disorders. In this work, molecular modeling studies were performed to develop a predictive Common Pharmacophore Hypothesis (CPH) and use it for alignment in 3D-QSAR studies using CoMFA and CoMSIA. A total of 30 compounds containing an amide fragment as the key linker, consisting of 17 of our previously discovered CypA inhibitors and 13 other inhibitors reported in the literature, were selected for pharmacophore refinement and 3D-QSAR studies. The best pharmacophore hypothesis AADR, which had two hydrogen bond acceptors, a hydrogen bond donor, and an aromatic ring, was obtained and used for the alignment of molecules in CoMFA and CoMSIA model development. The models showed a good r 2 value of 0.992 and 0.949 for CoMFA and CoMSIA, respectively. The contour maps of the models were analyzed to give structural insight for activity improvement of future novel CypA inhibitors. The CPH can also provide a powerful template for virtual screening and design of new CypA inhibitors.

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含酰胺连接剂的亲环蛋白A抑制剂的提纯及3D-QSAR研究。
亲环蛋白A (CypA)是一种普遍存在的细胞酶,在许多生物过程中起着至关重要的作用,CypA抑制剂的发现现在在免疫疾病的治疗中具有特殊的兴趣。在这项工作中,进行了分子建模研究,以开发预测性的共同药效团假设(CPH),并将其用于使用CoMFA和CoMSIA进行3D-QSAR研究的比对。共有30种化合物含有酰胺片段作为关键链接,包括我们之前发现的17种CypA抑制剂和文献中报道的13种其他抑制剂,被选择用于药效团精炼和3D-QSAR研究。最佳药效团假说AADR包含两个氢键受体、一个氢键给体和一个芳香环,并用于CoMFA和CoMSIA模型的分子定位。模型对CoMFA和CoMSIA的r 2值分别为0.992和0.949。分析模型的等高线图,为未来新型CypA抑制剂的活性改善提供结构洞察力。CPH还可以为虚拟筛选和设计新的CypA抑制剂提供一个强大的模板。
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Refinement and 3D-QSAR Studies of Inhibitors of Cyclophilin A Containing Amide Linker. Literature Highlights in Combinatorial Science: Solid-phase Synthesis. Fluorous 2,4-Dichloro-1,3,5-triazine (F-DCT) as Amide Coupling Agent. Fluorous 2,4-Dichloro-1,3,5-triazines (F-DCTs) as Nucleophile Scavengers. Literature Highlights in Combinatorial Science: QSAR Comb. Sci. 9/2005.
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