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LL37肽的月桂酰化和肉豆蔻酰化KR12片段与多氧化钒酸盐的相互作用。

Interactions of Laurylated and Myristoylated KR12 Fragment of the LL37 Peptide with Polyoxidovanadates.

作者信息

Kapica Martyna, Kamysz Elżbieta, Grabowska Ola, Tesmar Aleksandra, Pająk Marek, Chmur Katarzyna, Brzeski Jakub, Samsonov Sergey A, Wyrzykowski Dariusz

机构信息

Faculty of Chemistry, University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland.

Department of Physical and Biocoordination Chemistry, Medical University of Lodz, Muszyńskiego 1, 90-151 Lodz, Poland.

出版信息

Molecules. 2025 Apr 2;30(7):1589. doi: 10.3390/molecules30071589.

Abstract

Isothermal titration calorimetry (ITC), circular dichroism (CD) spectroscopy, and molecular dynamics simulations were applied to describe interactions between lipopeptides and decavanadate ions ([VO]). The selected lipopeptides are conjugates of the amide of the KR12 peptide, the smallest antimicrobial peptide derived from human cathelicidin LL-37, with lauric acid (C12-KR12) and myristic acid (C14-KR12). The smaller sizes of C12-KR12 and C14-KR12 compared to proteins allow for the rigorous characterization of their non-covalent interactions with highly negatively charged [VO] ions. The stoichiometry of the resulting decavanadate-peptide complexes and the thermodynamic parameters (Δ, Δ, and TΔ) of the interactions were determined. The ITC results, supported by the MD simulation, showed that the binding of cationic lipopeptides for decavanadate is rather non-specific and is driven by enthalpic contributions resulting from electrostatic interactions between the positively charged residues of the peptides and the anionic decavanadate. Furthermore, the influence of temperature and the interactions with decavanadate ions on the stability of the α-helical structure of the lipopeptides were assessed based on CD spectra. Under the experimental conditions (50 mM sodium cacodylate buffer, pH 5), the peptides adopt an α-helical conformation, with C14-KR12 showing greater thermal stability. The interactions with vanadium species disrupt the α-helical structure and reduce its thermal stability.

摘要

采用等温滴定量热法(ITC)、圆二色光谱法(CD)和分子动力学模拟来描述脂肽与十钒酸根离子([VO])之间的相互作用。所选脂肽是KR12肽(源自人cathelicidin LL - 37的最小抗菌肽)的酰胺与月桂酸(C12 - KR12)和肉豆蔻酸(C14 - KR12)的缀合物。与蛋白质相比,C12 - KR12和C14 - KR12的尺寸较小,这使得能够严格表征它们与高负电荷的[VO]离子的非共价相互作用。确定了所得十钒酸肽复合物的化学计量比以及相互作用的热力学参数(Δ、Δ和TΔ)。ITC结果在MD模拟的支持下表明,阳离子脂肽与十钒酸的结合相当非特异性,并且由肽的带正电残基与阴离子十钒酸之间的静电相互作用产生的焓贡献驱动。此外,基于CD光谱评估了温度以及与十钒酸根离子的相互作用对脂肽α - 螺旋结构稳定性的影响。在实验条件(50 mM二甲胂酸钠缓冲液,pH 5)下,肽呈现α - 螺旋构象,C14 - KR12表现出更高的热稳定性。与钒物种的相互作用破坏了α - 螺旋结构并降低了其热稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf14/11990403/41ea6cb22491/molecules-30-01589-g001.jpg

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