通过生物活性指导分馏法从 Nepeta baytopii Hedge & Lamond 分离出的芹菜素的 DNA 保护、分子对接、分子动力学、酶抑制和动力学研究。

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Semiha Yenigun, Yunus Basar, Yasar Ipek, Lutfi Behcet, Ibrahim Demirtas, Tevfik Ozen
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In this context, these studies will be the first and will contribute to the literature. Apigenin had high urease (IC<sub>50</sub>-5.00 ± 0.00 µM), butyrlcholinesterase (BChE:IC<sub>50</sub>-10.48 ± 0.00 µM), and tyrosinase (IC<sub>50</sub>-177.82 ± 14.40 µM) inhibition activities, while inhibition binding constants were high in urease (K<i><sub>i</sub></i>-0.05 mM), tyrosinase (K<i><sub>i</sub></i>-0.06 mM), and carbonic anhydrase (K<i><sub>i</sub></i>-0.08 mM). The binding affinities and constants of the interaction were also ascertained to be high for BChE (-9.50 kcal/mol, and K<i><sub>i</sub></i>-0.11 µM), and tyrosinase (-8.80 kcal/mol, and K<i><sub>i</sub></i>, 0.62 µM) with apigenin. In summary, apigenin can be used as an inhibitor for five enzymes. These results will give priority to further studies. Apigenin showed high DNA protection activity with a Form I value of 67.37%. 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引用次数: 0

摘要

本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA protection, molecular docking, molecular dynamic, enzyme inhibition, and kinetics studies of apigenin isolated from Nepeta baytopii Hedge & Lamond by bioactivity-guided fractionation.

Plant-derived bioactive substances have demonstrated significant qualities that suggest they may be crucial in preventing various chronic diseases. Flavonoids, which include apigenin, are the biggest group of polyphenols. In our study, we aimed to obtain the methanol-chloroform (1:1) extract from the aerial parts of Nepeta baytopii Hedge & Lamond and purify the apigenin using bioactivity-guided isolation to separate the active fraction. The current in vitro study provides updated knowledge on apigenin regarding its previously unresearched DNA protection activity and enzyme inhibition, enzyme inhibition kinetics, and enzyme-apigenin interactions. In this context, these studies will be the first and will contribute to the literature. Apigenin had high urease (IC50-5.00 ± 0.00 µM), butyrlcholinesterase (BChE:IC50-10.48 ± 0.00 µM), and tyrosinase (IC50-177.82 ± 14.40 µM) inhibition activities, while inhibition binding constants were high in urease (Ki-0.05 mM), tyrosinase (Ki-0.06 mM), and carbonic anhydrase (Ki-0.08 mM). The binding affinities and constants of the interaction were also ascertained to be high for BChE (-9.50 kcal/mol, and Ki-0.11 µM), and tyrosinase (-8.80 kcal/mol, and Ki, 0.62 µM) with apigenin. In summary, apigenin can be used as an inhibitor for five enzymes. These results will give priority to further studies. Apigenin showed high DNA protection activity with a Form I value of 67.37%. These data demonstrated that the interaction formed by BChE-apigenin gave the best results regarding enzyme inhibition and enzyme-molecule interaction. The stability of this complex was evaluated using molecular dynamics modeling.

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来源期刊
Journal of Biomolecular Structure & Dynamics
Journal of Biomolecular Structure & Dynamics 生物-生化与分子生物学
CiteScore
8.90
自引率
9.10%
发文量
597
审稿时长
2 months
期刊介绍: The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.
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