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解析滨蒿生物碱抑制碳酸酐酶 IX 的作用机制:体外与计算综合分析。

Unraveling the mechanism of carbonic anhydrase IX inhibition by alkaloids from Ruta chalepensis: A synergistic analysis of in vitro and in silico data.

机构信息

Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. BOX 84428, Riyadh, 11671, Saudi Arabia.

Department of Medical Laboratories, College of Applied Medical Sciences, Qassim University, 51452 Buraydah, Saudi Arabia.

出版信息

Biochem Biophys Res Commun. 2024 Nov 12;733:150685. doi: 10.1016/j.bbrc.2024.150685. Epub 2024 Sep 11.

Abstract

Due to the pivotal role of carbonic anhydrase IX (CA IX) in pathological conditions, there's a pressing need for novel inhibitors to improve patient outcomes and clinical management. Herein, we investigated the inhibitory efficacy of six alkaloids from Ruta chalepensis against CA IX through in vitro inhibition assay and computational modeling. Skimmianine and maculosidine displayed significant inhibitory activity in vitro, with low IC values of 105.2 ± 3.2 and 295.7 ± 14.1 nM, respectively. Enzyme kinetics analyses revealed that skimmianine exhibited a mixed inhibition mode, contrasting with the noncompetitive inhibition mechanism observed for the reference drug (acetazolamide), as indicated by intersecting lines in the Lineweaver-Burk plots. The findings of docking calculations revealed that skimmianine and maculosidine exhibited extensive polar interactions with the enzyme. These alkaloids demonstrate substantial binding interactions and occupy identical binding site as acetazolamide, thereby enhancing their efficacy as inhibitors of CA IX. Utilizing a 100 ns molecular dynamics (MD) simulation, the dynamic interactions between isolated alkaloids and CA IX were intensively assessed. Analysis of diverse MD parameters revealed that skimmianine and maculosidine displayed consistent trajectories and notable energy stabilization during their interaction with CA IX. The findings of MM/PBSA analysis depicted the minimum binding free energy for skimmianine and maculosidine. In addition, the Potential Energy Landscape (PEL) analysis revealed distinct and stable conformational states for the CA IX-ligand complexes, with Skimmianine showing the most stable and lowest energy configuration. These computational findings align with experimental results, emphasizing the potential efficacy of skimmianine and maculosidine as inhibitors of CA IX.

摘要

由于碳酸酐酶 IX(CA IX)在病理条件下起着关键作用,因此迫切需要新型抑制剂来改善患者的预后和临床管理。在此,我们通过体外抑制试验和计算建模研究了从筋骨草中提取的六种生物碱对 CA IX 的抑制作用。莨菪灵和白屈菜红碱在体外表现出显著的抑制活性,其 IC 值分别为 105.2 ± 3.2 和 295.7 ± 14.1 nM。酶动力学分析表明,莨菪灵表现出混合抑制模式,与参考药物(乙酰唑胺)的非竞争性抑制机制形成对比,这反映在 Lineweaver-Burk 图中相交的线。对接计算的结果表明,莨菪灵和白屈菜红碱与酶表现出广泛的极性相互作用。这些生物碱表现出显著的结合相互作用,占据与乙酰唑胺相同的结合位点,从而增强了它们作为 CA IX 抑制剂的功效。利用 100 ns 分子动力学(MD)模拟,深入评估了分离的生物碱与 CA IX 之间的动态相互作用。分析各种 MD 参数表明,莨菪灵和白屈菜红碱在与 CA IX 相互作用时表现出一致的轨迹和显著的能量稳定。MM/PBSA 分析描绘了莨菪灵和白屈菜红碱的最小结合自由能。此外,势能景观(PEL)分析揭示了 CA IX-配体复合物的独特且稳定的构象状态,莨菪灵显示出最稳定和最低能量的构型。这些计算结果与实验结果一致,强调了莨菪灵和白屈菜红碱作为 CA IX 抑制剂的潜在功效。

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