Instituto de Química del Noroeste Argentino (INQUINOA), Universidad Nacional de Tucumán, CONICET, San Miguel de Tucumán, Argentina.
Departamento de Química Biológica Ranwel Caputto, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Córdoba, Argentina; Centro de Investigaciones en Química Biológica de Córdoba (CIQUIBIC), CONICET, Universidad Nacional de Córdoba, Córdoba, Argentina.
Spectrochim Acta A Mol Biomol Spectrosc. 2019 May 15;215:389-397. doi: 10.1016/j.saa.2019.03.009. Epub 2019 Mar 4.
Interactions between the antibiotic peptide nisin and multilamellar vesicles of phosphoglycerol lipids in different phase-states were studied using vibrational spectroscopy. The infrared amide I' band of nisin, both in solution and in the membrane-bound state, was analyzed in the temperature range comprised between 20 and 60 °C in order to study its conformational behavior. Nisin presented mainly unordered and β-turns conformations. Their relative populations varied according to the environment and as the temperature increased: β turns were more favored in the membrane-bound state than in solution, but at higher temperatures the disordered conformation was dominant in both states. Spectral changes of specific infrared bands belonging to the hydrocarbon and polar moieties of lipids were also analyzed to evaluate the perturbation of the lipid membrane order. Nisin interactions with the membrane polar region induced a high restriction to water incorporation, promoting a small increase in the temperature of the lipid phase transition. Raman spectra of nisin/phosphoglycerol systems at ambient temperature were also analyzed. They revealed that the peptide incorporation to a membrane in the fluid phase caused drastic structural modifications in the hydrophobic region of the bilayer. Although nisin may be able to disrupt the hydrophobic portion of the bilayer in the gel phase, the most of the peptide molecule remained at the membrane surface interacting with the polar headgroups. This work provides evidence of a differential effect of nisin on anionic membranes, depending on the phase-state of the lipid.
采用振动光谱法研究了抗生素肽乳链菌肽(nisin)与不同相态的磷酸甘油脂质的多层囊泡之间的相互作用。在 20 至 60°C 的温度范围内分析了 nisin 在溶液中和膜结合状态下的红外酰胺 I'带,以研究其构象行为。在溶液和膜结合状态下,nisin 主要呈现无规卷曲和β-转角构象。它们的相对丰度根据环境和温度的升高而变化:β-转角在膜结合状态下比在溶液中更有利,但在较高温度下,无序构象在两种状态下均占主导地位。还分析了属于脂质烃链和极性基团的特定红外带的光谱变化,以评估脂质膜有序性的扰动。nisin 与膜极性区域的相互作用强烈限制了水的掺入,从而导致脂质相转变温度略有升高。还分析了室温下 nisin/磷酸甘油体系的拉曼光谱。结果表明,肽在流态下掺入膜中会导致双层膜疏水区的剧烈结构修饰。尽管 nisin 可能能够破坏凝胶相中层状的疏水区,但肽分子的大部分仍留在膜表面与极性头基相互作用。这项工作提供了证据表明,nisin 对阴离子膜具有不同的影响,这取决于脂质的相态。