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首页> 外文期刊>Journal of Molecular Structure >A facile & convenient route for the stereoselective synthesis of Z-isoxazol-5(4H)-ones derivatives catalysed by sodium acetate: Synthesis, multispectroscopic properties, crystal structure with DFT calculations, DNA-binding studies and molecular docking studies
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A facile & convenient route for the stereoselective synthesis of Z-isoxazol-5(4H)-ones derivatives catalysed by sodium acetate: Synthesis, multispectroscopic properties, crystal structure with DFT calculations, DNA-binding studies and molecular docking studies

机译:由乙酸钠催化的Z-Isoxol-5(4H)衍生物的立体选择合成的容易和方便的途径:合成,多光谱性质,具有DFT计算的晶体结构,DNA结合研究和分子对接研究

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An efficient procedure for the one-pot synthesis of 4-arylmethylene-3- methylisoxazol-5-ones from ethyl acetoacetate, hydroxylamine hydrochloride, and various aromatic aldehydes using sodium acetate as a safe, clean, and green catalyst in ethanol is reported. This simple, synthetic and eco-friendly approach resulted in a remarkable improvement in the synthetic efficiency (90-95% yield), high purity, minimizing the production of chemical wastes without using highly toxic reagents for the synthesis and, more notably, it improved the selectivity for (Z)-isoxazol-5-ones derivatives. By performing DFT calculations, it was found that the (Z)-isomer of compound 4a is stabilized by 6.54 kcal mol(-1) more than the (E)-isomer and The Z-isomer of 4g is also more stable, by 4.36 kcal mol(-1). All of the compounds were tested for interaction study with ct-DNA. Compounds 4a and 4b shows the most effective binding affinity with ct-DNA in comparison of other synthesized compounds. The interaction studies of compound 4a and 4b with ct-DNA showed groove binding interaction (non-intercalation) with both compounds. On the other hand, compound 4a (K = 5.9 x 10(5) M-1) shows higher binding affinity to the ct-DNA than compound 4b (K = 4.5 x 10(5) M-1). The molecular modeling results illustrated that compound 4b strongly binds to groove of DNA by relative binding energy of docked structure -6.35 kcal mol(-1). (C) 2019 Elsevier B.V. All rights reserved.
机译:据报道了一种高效的乙酸乙酯,羟胺盐酸甲酯,羟胺醛和各种芳香族醛作为安全,清洁和绿色催化剂中的4-芳基甲基-3-甲基甲氧基唑-5-乙酰乙醇中的乙醇中的一种有效方法。这种简单,合成的和环保的方法导致了合成效率(90-95%产率),高纯度,最小化化学废物的生产而显着提高,而不使用高毒性试剂的合成,更值得注意地改善了(Z)-苏恶唑-5-衍生物的选择性。通过进行DFT计算,发现化合物4a的(Z) - 比(e) - 异构体(E) - 异构体稳定,4g的Z-异构体也更稳定,4.36 kcal mol(-1)。测试所有化合物以与CT-DNA相互作用研究。化合物4a和4b显示了与其他合成化合物相比的CT-DNA最有效的结合亲和力。化合物4a和4b与CT-DNA的相互作用研究显示出两种化合物的槽结合相互作用(未嵌入)。另一方面,化合物4a(k = 5.9×10(5)m-1)显示比化合物4b的CT-DNA更高的结合亲和力(k = 4.5×10(5)m-1)。所示的分子建模结果通过对接结构的相对结合能量-6.35 kcal摩尔(-1),化合物4b与DNA的槽强烈结合到DNA的凹槽。 (c)2019 Elsevier B.v.保留所有权利。

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