A multi-technique approach to enlighten the role of metal coordination in calcitermin antiviral properties

IF 2.5 4区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS Analytical biochemistry Pub Date : 2025-05-01 Epub Date: 2025-01-30 DOI:10.1016/j.ab.2025.115784
Anna Caproni , Silvia Leveraro , Klaudia Szarszoń , Chiara Nordi , Riccardo Fontana , Mattia Buratto , Peggy Marconi , Maurizio Remelli , Mariaconcetta Sicurella , Denise Bellotti
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Abstract

In this work we presented how the use of suitable electroanalytical, thermodynamic and spectroscopic methods combined with proper experimental conditions can provide comprehensive information on the interaction between metal ions and peptides in solution, as a successful strategy for studying biological systems. Our candidate peptide is calcitermin, an effective metal chelator with significant anti-Candida and antibacterial activity in the presence of divalent metals. While the bioinorganic chemistry of calcitermin with zinc and copper is quite well described in the literature, no data about nickel complexes are available; we therefore deepened calcitermin ability to form nickel complexes by different analytical techniques, including potentiometry, ultraviolet–visible absorption spectrophotometry, circular dichroism and high-resolution mass spectrometry. Moreover, for the first time we have investigated the antiviral activity of calcitermin and its metal complexes towards Herpes simplex type 1. Despite the nickel-associated slow kinetics, which requires specific experimental precautions, calcitermin forms stable complexes with this cation at different pH conditions. Both the apopeptide and its metal complexes show a random coil secondary structure, which is often characteristic of viral cellular adhesion inhibition. This research highlights that calcitermin and its metal complexes can interfere with viral infections, particularly HSV-1, most likely by altering cell membrane permeability.

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多技术途径揭示金属配位在钙黄素抗病毒特性中的作用。
在这项工作中,我们介绍了如何使用合适的电分析、热力学和光谱方法结合适当的实验条件,可以提供关于溶液中金属离子与肽之间相互作用的全面信息,作为研究生物系统的成功策略。我们的候选肽是钙白蛋白,一种有效的金属螯合剂,在二价金属存在下具有显著的抗念珠菌和抗菌活性。虽然钙黄骨素与锌和铜的生物无机化学在文献中有很好的描述,但没有关于镍配合物的数据;因此,我们通过不同的分析技术,包括电位法、紫外可见吸收分光光度法、圆二色法和高分辨率质谱法,加深了钙黄骨素形成镍配合物的能力。此外,我们首次研究了钙黄素及其金属配合物对1型单纯疱疹病毒的抗病毒活性。尽管镍相关的缓慢动力学需要特定的实验注意事项,但钙黄骨素在不同的pH条件下与该阳离子形成稳定的配合物。肽及其金属配合物均呈随机线圈状二级结构,这通常是病毒细胞粘附抑制的特征。这项研究强调,钙黄蛋白及其金属配合物可以干扰病毒感染,特别是HSV-1,最有可能是通过改变细胞膜的通透性。
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来源期刊
Analytical biochemistry
Analytical biochemistry 生物-分析化学
CiteScore
5.70
自引率
0.00%
发文量
283
审稿时长
44 days
期刊介绍: The journal''s title Analytical Biochemistry: Methods in the Biological Sciences declares its broad scope: methods for the basic biological sciences that include biochemistry, molecular genetics, cell biology, proteomics, immunology, bioinformatics and wherever the frontiers of research take the field. The emphasis is on methods from the strictly analytical to the more preparative that would include novel approaches to protein purification as well as improvements in cell and organ culture. The actual techniques are equally inclusive ranging from aptamers to zymology. The journal has been particularly active in: -Analytical techniques for biological molecules- Aptamer selection and utilization- Biosensors- Chromatography- Cloning, sequencing and mutagenesis- Electrochemical methods- Electrophoresis- Enzyme characterization methods- Immunological approaches- Mass spectrometry of proteins and nucleic acids- Metabolomics- Nano level techniques- Optical spectroscopy in all its forms. The journal is reluctant to include most drug and strictly clinical studies as there are more suitable publication platforms for these types of papers.
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