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首页> 外文期刊>MedChemComm >5,6-Benzoflavones as cholesterol esterase inhibitors: synthesis, biological evaluation and docking studies
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5,6-Benzoflavones as cholesterol esterase inhibitors: synthesis, biological evaluation and docking studies

机译:5,6-苯并氟氯烷烃作为胆固醇酯酶抑制剂:合成,生物学评估和对接研究

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摘要

In a continued effort to develop potent cholesterol esterase (CEase) inhibitors, a series of 5,6-benzoflavone derivatives was rationally designed and synthesized by changing the position of the benzene ring attached to the flavone skeleton in previously reported 7,8-benzoflavones. All the synthesized compounds were checked for their inhibitory potential against cholesterol esterase (CEase) using a spectrophotometric assay. Among the series of forty compounds, seven derivatives (B-10 to B-16) exhibited above 90 percent inhibition against CEase in an in vitro enzymatic assay. Compound B-16 showed the most promising activity with an IC_(50) value of 0.73 nM against cholesterol esterase. To determine the type of inhibition, enzyme kinetic studies were carried out for B-16, which revealed its mixed-type inhibition approach. Moreover, to figure out the key binding interactions of B-16 with the amino acid residues of the enzyme's active site, molecular protein-ligand docking studies were also performed. B-16 completely blocks the catalytic assembly of CEase and prevents it from participating in the ester hydrolysis mechanism. The favorable binding conformation of B-16 suggests its prevailing role as a CEase inhibitor. Overall, the study showed that the cisorientation of ring A with respect to the carbonyl group of ring C is responsible for the potent CEase inhibitory activity of the newly synthesized compounds.
机译:在持续开发有效的胆固醇酯酶(停止)抑制剂的努力中,通过改变先前报道的7,8-苯甲酮的黄酮骨架上附着的苯环的位置来合理地设计和合成了一系列的5,6-苯并氟酮衍生物。使用分光光度法测定检查所有合成的化合物对胆固醇酯酶(停止)的抑制潜力。在一系列四十种化合物中,七种衍生物(B-10至B-16)在体外酶测定中的抑制超过90%抑制。化合物B-16显示出最有前景的活性,IC_(50)值为0.73nm对胆固醇酯酶。为了确定抑制的类型,对B-16进行酶动力学研究,揭示其混合型抑制方法。此外,为了弄清楚B-16与酶的活性位点的氨基酸残基的关键结合相互作用,还进行了分子蛋白质 - 配体对接研究。 B-16完全阻止停止的催化组装并防止其参与酯水解机制。 B-16的有利结合构象表明其作为停止抑制剂的主要作用。总的来说,该研究表明,环A相对于环C的羰基的施变应对新合成的化合物的有效停止抑制活性。

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