氧化还原活性铜(II)离子存在对黄酮类化合物 Acacetin 的抗氧化作用、DNA 结合和迁移的影响:光谱和硅学研究。

IF 3.8 2区 化学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Inorganic Biochemistry Pub Date : 2025-03-01 Epub Date: 2024-12-09 DOI:10.1016/j.jinorgbio.2024.112802
Marek Štekláč, Michal Malček, Peter Gajdoš, Simona Vevericová, Milan Čertík, Marián Valko, Vlasta Brezová, Miriama Malček Šimunková
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引用次数: 0

摘要

Acacetin (AC)是黄酮类化合物中的一种天然多酚。黄酮类化合物的行为取决于氧化还原活性物质的存在;因此,我们的目标是研究它们与Cu(II)离子相互作用后的生物活性。我们的研究表明,AC可以有效地结合Cu(II)离子,这得到了UV-Vis和EPR光谱以及DFT计算的证实。AC本身似乎是一种有效的ABTS自由基阳离子清除剂,但这种能力在Cu(II)配位时明显受到限制。ABTS•+试验也显示了AC在维生素C和谷胱甘肽存在下可能的轻微协同作用。相反,在Cu(II)离子存在下观察到抑制作用。在含Cu(II)的类fenton模型体系中等量加入AC对羟基自由基的产生没有明显影响,但过量时•OH的形成减少,EPR自旋俘获证实了这一点。吸附滴定和凝胶电泳显示,与小牛胸腺(CT)-DNA有效结合,对Cu(II)-AC络合物具有较强的相互作用。利用分子对接和分子动力学描述了与生物分子的详细结合模式。结果表明,DNA的双螺旋在与Cu(II)-AC配合物相互作用后展开。利用人血清白蛋白(HSA)的荧光光谱分析表明,AC及其Cu(II)配合物具有潜在的转运能力。
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Antioxidant effect, DNA-binding, and transport of the flavonoid acacetin influenced by the presence of redox-active Cu(II) ion: Spectroscopic and in silico study.

Acacetin (AC) is a natural polyphenol from the group of flavonoids. It is well established that the behavior of flavonoids depends on the presence of redox-active substances; therefore, we aim to investigate their biological activity following the interaction with Cu(II) ion. Our study demonstrates that AC can effectively bind Cu(II) ions, as confirmed by UV-Vis and EPR spectroscopy as well as DFT calculations. AC appears as a potent scavenger against the model ABTS radical cation by itself, but this ability is significantly limited upon Cu(II) coordination. The possible mild synergistic effect of AC in the presence of vitamin C and glutathione was also shown by the ABTS•+ test. In contrast, an inhibitory effect was observed in the presence of Cu(II) ions. The equimolar addition of AC to the model Fenton-like system containing Cu(II) did not have a noticeable effect on the concentration of hydroxyl radicals produced, but in its excess the formation of OH decreased, as proved by EPR spin trapping. Absorption titrations and gel electrophoresis revealed effective binding to calf thymus (CT)-DNA with a stronger interaction for the Cu(II)-AC complex. The detailed mode of binding to biomolecules was described using molecular docking and molecular dynamics. Obtained results indicate that the double helix of DNA unwinds after interaction with the Cu(II)-AC complex. Fluorescence spectroscopy, employing human serum albumin (HSA), suggested a potential transport capacity for both AC and its Cu(II) complex.

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来源期刊
Journal of Inorganic Biochemistry
Journal of Inorganic Biochemistry 生物-生化与分子生物学
CiteScore
7.00
自引率
10.30%
发文量
336
审稿时长
41 days
期刊介绍: The Journal of Inorganic Biochemistry is an established international forum for research in all aspects of Biological Inorganic Chemistry. Original papers of a high scientific level are published in the form of Articles (full length papers), Short Communications, Focused Reviews and Bioinorganic Methods. Topics include: the chemistry, structure and function of metalloenzymes; the interaction of inorganic ions and molecules with proteins and nucleic acids; the synthesis and properties of coordination complexes of biological interest including both structural and functional model systems; the function of metal- containing systems in the regulation of gene expression; the role of metals in medicine; the application of spectroscopic methods to determine the structure of metallobiomolecules; the preparation and characterization of metal-based biomaterials; and related systems. The emphasis of the Journal is on the structure and mechanism of action of metallobiomolecules.
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