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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The role of sterols in the lipid vesicle response induced by the pore-forming agent nystatin
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The role of sterols in the lipid vesicle response induced by the pore-forming agent nystatin

机译:固醇在成孔剂制霉菌素诱导的脂质囊泡反应中的作用

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The influences of ergosterol and cholesterol on the activity of the nystatin were investigated experimentally in a POPC model membrane as well as theoretically. The behavior of giant unilamellar vesicles (GUVs) under osmotic stress due to the formation of transmembrane pores was observed on single vesicles at different nystatin concentrations using phase-contrast microscopy. A significant shift of the typical vesicle behavior, i.e., morphological alterations, membrane bursts, slow vesicle ruptures and explosions, towards lower nystatin concentrations was detected in the ergosterol-containing vesicles and a slight shift towards higher nystatin concentrations was detected in the cholesterol-containing membranes. In addition, the nystatin activity was shown to be significantly affected by the ergosterol membrane's molar fraction in a non-proportional manner. The observed tension-pore behavior was interpreted using a theoretical model based on the osmotic phenomena induced by the occurrence of size-selective nystatin pores. The number of nystatin pores for different vesicle behavior was theoretically determined and the role of the different mechanical characteristics of the membrane, i.e., the membrane's expansivity and bending moduli, the line tension and the lysis tension, in the tension-pore formation process was quantified. The sterol-induced changes could not be explained adequately on the basis of the different mechanical characteristics, and were therefore interpreted mainly by the direct influences of the membrane sterols on the membrane binding, the partition and the pore-formation process of nystatin.
机译:麦角固醇和胆固醇对制霉菌素活性的影响在POPC模型膜上进行了实验性研究,并在理论上进行了研究。使用相差显微镜观察了在不同制霉菌素浓度的单囊泡上,由于跨膜孔的形成而在渗透胁迫下的巨大单层囊泡(GUV)的行为。在含麦角固醇的囊泡中,典型的囊泡行为(即形态改变,膜破裂,缓慢的囊泡破裂和爆炸)朝着较低的制霉菌素浓度发生了显着变化,而在含胆固醇的囊泡中则向较高的制霉菌素浓度发生了轻微变化。膜。另外,制霉菌素活性以非比例方式显着受麦角甾醇膜摩尔分数的影响。使用理论模型解释观察到的张力孔行为,该模型基于尺寸选择性制霉菌素孔的出现而引起的渗透现象。理论上确定了不同囊泡行为的制霉菌素孔的数量,并定量了膜的不同机械特性(即膜的膨胀性和弯曲模量,线张力和裂解张力)在张力孔形成过程中的作用。 。固醇诱导的变化不能根据不同的机械特性进行充分解释,因此主要由膜固醇对制霉菌素的膜结合,分配和成孔过程的直接影响来解释。

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