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新型二苯醚的合成、生物学评价及分子动力学模拟研究

Synthesis, Biological Evaluation and Molecular Dynamics Simulation Studies of Novel Diphenyl Ethers.

作者信息

Khade Amol B, Kar Sidhartha S, Alummoottil Cinu T, Tiwari Ashutosh, Tiwari Mradul, Eshwara Vandana K, Bhat Pritesh, Giliyar Varadaraj B, Shenoy Gurupur G

机构信息

Department of Pharmaceutical Chemistry, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal-576104, India.

Department of Pharmaceutical Biotechnology, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal-576104, India.

出版信息

Med Chem. 2020;16(2):256-270. doi: 10.2174/1573406415666190306152907.

Abstract

BACKGROUND

The well-known antibacterial agent Triclosan (TCL) that targets bacterial enoylacyl protein reductase has been described to inhibit human fatty acid synthase (FASN) via the enoylacyl reductase domain. A Literature survey indicates that TCL is selectively toxic to cancer cells and furthermore might indeed reduce cancer incidence in vivo. A recent study found that TCL inhibits FASN by acting as an allosteric protein-protein interface (PPI) inhibitor. It induces dimer orientation changes that effect in a downstream reorientation of catalytic residues in the NADPH binding site proposing TCL as a viable scaffold to design a superior molecule that might have more inhibitory potential. This unveils tons of potential interaction space to take advantage of future inhibitor design.

OBJECTIVES

Synthesis of TCL mimicking novel diphenyl ether derivatives, biological evaluation as potential antiproliferative agents and molecular docking and molecular dynamics simulation studies.

METHODS

A series of novel N-(1-(3-hydroxy-4-phenoxyphenyl)-3-oxo-3-phenylpropyl)acetamides (3a-n) and N-(3(3-hydroxy-4phenoxyphenyl)-3-oxo-1-phenylpropyl) acetamides (6a-n) were designed, synthesized, characterized and evaluated against HepG2, A-549, MCF-7 and Vero cell lines. The induction of antiproliferative activity of selected compounds (3d and 6c) was done by AO/EB (acridine orange/ethidium bromide) nuclear staining method, DNA fragmentation study, and cell cycle analysis was performed by flow cytometry. Molecular docking and dynamics simulation study was also performed.

RESULTS

Among the tested compounds, compound 3d was most active (IC50 13.76 ± 0.43 µM) against A-549 cell line. Compounds 3d and 3g were found to be moderately active with IC50 30.56 ± 1.1 µM and 25.05 ± 0.8 µM respectively against MCF-7 cell line. Morphological analysis of A-549 cells treated with 3d and 6c clearly demonstrated the reduction of cell viability and induction of apoptosis. DNA fragmentation was observed as a characteristic of apoptosis in treated cells. Further, cell cycle analysis by flow cytometry confirmed that compounds 3d and 6c significantly arrested the cell cycle at the G0/G1 phase. Molecular docking study demonstrated that these compounds exhibit high affinity for the human fatty acid synthase (hFASN) target. Molecular dynamics simulation study of the most active compound 3d was performed for calculating binding free energies using Molecular Mechanics-Generalized Born Surface Area (MM/GBSA).

CONCLUSION

Compound 3d (IC50 13.76 ± 0.43 µM) has been identified as a potential lead molecule for anticancer activity against A-549 cells followed by 3l, 6c, and 3g. Thus, the design of diphenyl ether derivatives with enhanced affinity to the binding site of hER may lead to the discovery of potential anticancer agents.

摘要

背景

著名的抗菌剂三氯生(TCL)靶向细菌烯酰基酰基蛋白还原酶,已被描述可通过烯酰基酰基还原酶结构域抑制人脂肪酸合酶(FASN)。文献调查表明,TCL对癌细胞具有选择性毒性,并且在体内可能确实会降低癌症发病率。最近的一项研究发现,TCL通过作为变构蛋白-蛋白界面(PPI)抑制剂来抑制FASN。它诱导二聚体取向变化,导致NADPH结合位点中催化残基的下游重新取向,这表明TCL是设计具有更大抑制潜力的优质分子的可行支架。这揭示了大量潜在的相互作用空间,可用于未来的抑制剂设计。

目的

合成模仿TCL的新型二苯醚衍生物,作为潜在抗增殖剂进行生物学评估以及进行分子对接和分子动力学模拟研究。

方法

设计、合成、表征了一系列新型N-(1-(3-羟基-4-苯氧基苯基)-3-氧代-3-苯基丙基)乙酰胺(3a-n)和N-(3(3-羟基-4-苯氧基苯基)-3-氧代-1-苯基丙基)乙酰胺(6a-n),并针对肝癌细胞系HepG2、肺癌细胞系A-549、乳腺癌细胞系MCF-7和非洲绿猴肾细胞系Vero进行了评估。通过吖啶橙/溴化乙锭(AO/EB)核染色法诱导所选化合物(3d和6c)的抗增殖活性,进行DNA片段化研究,并通过流式细胞术进行细胞周期分析。还进行了分子对接和动力学模拟研究。

结果

在测试的化合物中,化合物3d对A-549细胞系活性最高(IC50为13.76±0.43μM)。发现化合物3d和3g对MCF-7细胞系具有中等活性,IC50分别为30.56±1.1μM和25.05±0.8μM。用3d和6c处理的A-549细胞的形态学分析清楚地表明细胞活力降低并诱导了凋亡。在处理的细胞中观察到DNA片段化是凋亡的特征。此外,通过流式细胞术进行的细胞周期分析证实,化合物3d和6c在G0/G1期显著阻滞细胞周期。分子对接研究表明,这些化合物对人脂肪酸合酶(hFASN)靶点具有高亲和力。对活性最高的化合物3d进行了分子动力学模拟研究,以使用分子力学-广义玻恩表面面积(MM/GBSA)计算结合自由能。

结论

化合物3d(IC50为13.76±0.43μM)已被确定为对A-549细胞具有抗癌活性的潜在先导分子,其次是3l、6c和3g。因此,设计对hER结合位点具有增强亲和力的二苯醚衍生物可能会导致发现潜在的抗癌剂。

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