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膜表面电荷密度对蜂毒肽诱导的细胞裂解的调节作用。

Modulation of melittin-induced lysis by surface charge density of membranes.

作者信息

Monette M, Lafleur M

机构信息

Département de Chimie, Université de Montréal, Québec, Canada.

出版信息

Biophys J. 1995 Jan;68(1):187-95. doi: 10.1016/S0006-3495(95)80174-8.

Abstract

Phosphorus NMR spectroscopy was used to characterize the importance of electrostatic interactions in the lytic activity of melittin, a cationic peptide. The micellization induced by melittin has been characterized for several lipid mixtures composed of saturated phosphatidylcholine (PC) and a limited amount of charged lipid. For these systems, the thermal polymorphism is similar to the one observed for pure PC: small comicelles are stable in the gel phase and extended bilayers are formed in the liquid crystalline phase. Vesicle surface charge density influences strongly the micellization. Our results show that the presence of negatively charged lipids (phospholipid or unprotonated fatty acid) reduces the proportion of lysed vesicles. Conversely, the presence of positively charged lipids leads to a promotion of the lytic activity of the peptide. The modulation of the lytic effect is proposed to originate from the electrostatic interactions between the peptide and the bilayer surface. Attractive interactions anchor the peptide at the surface and, as a consequence, inhibit its lytic activity. Conversely, repulsive interactions favor the redistribution of melittin into the bilayer, causing enhanced lysis. A quantitative analysis of the interaction between melittin and negatively charged bilayers suggests that electroneutrality is reached at the surface, before micellization. The surface charge density of the lipid layer appears to be a determining factor for the lipid/peptide stoichiometry of the comicelles; a decrease in the lipid/peptide stoichiometry in the presence of negatively charged lipids appears to be a general consequence of the higher affinity of melittin for these membranes.

摘要

磷核磁共振波谱法被用于表征静电相互作用在蜂毒肽(一种阳离子肽)的溶解活性中的重要性。蜂毒肽诱导的胶束化已针对由饱和磷脂酰胆碱(PC)和少量带电脂质组成的几种脂质混合物进行了表征。对于这些体系,热多晶型性与纯PC所观察到的相似:小的胶束在凝胶相中稳定,而在液晶相中形成延伸的双层结构。囊泡表面电荷密度强烈影响胶束化。我们的结果表明,带负电荷的脂质(磷脂或未质子化的脂肪酸)的存在会降低破裂囊泡的比例。相反,带正电荷的脂质的存在会促进该肽的溶解活性。提出溶解效应的调节源自肽与双层表面之间的静电相互作用。吸引相互作用将肽锚定在表面,因此抑制其溶解活性。相反,排斥相互作用有利于蜂毒肽重新分布到双层中,导致增强的裂解作用。对蜂毒肽与带负电荷的双层之间相互作用的定量分析表明,在胶束化之前表面达到电中性。脂质层的表面电荷密度似乎是胶束的脂质/肽化学计量的决定因素;在存在带负电荷的脂质时脂质/肽化学计量的降低似乎是蜂毒肽对这些膜具有更高亲和力的普遍结果。

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