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Metal-Biosurfactant Complexes Characterization: Binding Self-Assembly and Interaction with Bovine Serum Albumin

机译:金属-生物表面活性剂复合物的表征:结合自组装和与牛血清白蛋白的相互作用。

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摘要

Studies on the specific and nonspecific interactions of biosurfactants with proteins are broadly relevant given the potential applications of biosurfactant/protein systems in pharmaceutics and cosmetics. The aim of this study was to evaluate the interactions of divalent counterions with the biomolecular anionic biosurfactant surfactin-C15 through molecular modeling, surface tension and dynamic light scattering (DLS), with a specific focus on its effects on biotherapeutic formulations. The conformational analysis based on a semi-empirical approach revealed that Cu2+ ions can be coordinated by three amide nitrogens belonging to the surfactin-C15 cycle and one oxygen atom of the aspartic acid from the side chain of the lipopeptide. Backbone oxygen atoms mainly involve Zn2+, Ca2+ and Mg2+. Subsequently, the interactions between metal-coordinated lipopeptide complexes and bovine serum albumin (BSA) were extensively investigated by fluorescence spectroscopy and molecular docking analysis. Fluorescence results showed that metal-lipopeptide complexes interact with BSA through a static quenching mechanism. Molecular docking results indicate that the metal-lipopeptide complexes are stabilized by hydrogen bonding and van der Waals forces. The biosurfactant-protein interaction properties herein described are of significance for metal-based drug discovery hypothesizing that the association of divalent metal ions with surfactin allows its interaction with bacteria, fungi and cancer cell membranes with effects that are similar to those of the cationic peptide antibiotics.
机译:鉴于生物表面活性剂/蛋白质系统在药物和化妆品中的潜在应用,对生物表面活性剂与蛋白质的特异性和非特异性相互作用的研究具有广泛的相关性。这项研究的目的是通过分子建模,表面张力和动态光散射(DLS)评估二价抗衡离子与生物分子阴离子生物表面活性剂surfactin-C15的相互作用,并特别关注其对生物治疗制剂的影响。基于半经验方法的构象分析表明,Cu 2 + 离子可以被表面活性素-C15循环中的三个酰胺氮和一个来自天门冬氨酸侧链的天冬氨酸的氧原子配位。脂肽。骨干氧原子主要包括Zn 2 + ,Ca 2 + 和Mg 2 + 。随后,通过荧光光谱和分子对接分析广泛研究了金属配位的脂肽复合物与牛血清白蛋白(BSA)之间的相互作用。荧光结果表明,金属-脂肽复合物通过静态猝灭机制与BSA相互作用。分子对接结果表明,金属-脂肽复合物通过氢键和范德华力稳定。本文所述的生物表面活性剂-蛋白质相互作用特性对于基于金属的药物发现具有重要意义,该假设假设二价金属离子与表面活性素的缔合可使其与细菌,真菌和癌细胞膜相互作用,其作用与阳离子肽抗生素相似。

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