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无甾醇膜中两性霉素B离子选择性通道的脂质和应激依赖性

Lipid and stress dependence of amphotericin B ion selective channels in sterol-free membranes.

作者信息

Ruckwardt T, Scott A, Scott J, Mikulecky P, Hartsel S C

机构信息

Department of Chemistry, Phillips 461, University of Wisconsin-Eau Claire, Eau Claire, WI 54702-4004, USA.

出版信息

Biochim Biophys Acta. 1998 Jul 17;1372(2):283-8. doi: 10.1016/s0005-2736(98)00073-x.

Abstract

The idea that amphotericin B (AmB) may not require sterols to form ion selective channels has recently been criticized on the grounds that egg phospholipids commonly used in experiments may contain small amounts of sterol which associate with AmB to form AmB/sterol pore channel structures. It was recently shown in this laboratory that modest osmotic stress can enhance the formation of AmB channels in sterol-free egg phosphatidylcholine (eggPC) membranes. We have tested AmB's ability to form ion channels/defects in synthetic palmitoyl oleoyl (POPC), dieicosenyl (DEPC) and natural eggPC osmotically stressed large unilamellar vesicles (LUV) using pyranine fluorescence detected ion/H+ exchange. These sterol-free POPC LUV exhibit greatly increased sensitivity to cation selective AmB channel formation when osmotically stressed; even more than eggPC. Under these stressed conditions, AmB activity was observed at [AmB]/POPC ratios as low as 3.5x10(-4), corresponding to about 34 AmB molecules/vesicle. DEPC vesicles were almost completely unresponsive, demonstrating a strong bilayer thickness dependence. These results prove conclusively that AmB can form sterol-free channels and do so within therapeutic concentration ranges (>0.5-10x10(-6) M) in a stress-dependent manner. This phenomenon may allow us to use osmotic stress changes in simple model systems to spectroscopically isolate and characterize the thus-far elusive AmB channel forming aggregate. In addition, this stress dependence may be responsible for the potentiation of renal toxicity of AmB in the ascending branch of the loop of Henle which is under greatest osmotic stress.

摘要

两性霉素B(AmB)可能不需要固醇来形成离子选择性通道的观点最近受到了批评,理由是实验中常用的卵磷脂可能含有少量固醇,这些固醇与AmB结合形成AmB/固醇孔道结构。本实验室最近表明,适度的渗透应激可增强无固醇卵磷脂酰胆碱(eggPC)膜中AmB通道的形成。我们使用吡喃荧光检测离子/H⁺交换,测试了AmB在合成的棕榈酰油酰(POPC)、二二十碳烯酰(DEPC)和天然eggPC经渗透应激的大单层囊泡(LUV)中形成离子通道/缺陷的能力。这些无固醇的POPC LUV在渗透应激时对阳离子选择性AmB通道形成的敏感性大大增加;甚至比eggPC还要高。在这些应激条件下,在[AmB]/POPC比值低至3.5×10⁻⁴时观察到了AmB活性,这相当于每个囊泡约34个AmB分子。DEPC囊泡几乎完全无反应,表明对双层厚度有很强的依赖性。这些结果确凿地证明,AmB可以形成无固醇通道,并且在治疗浓度范围(>0.5 - 10×10⁻⁶ M)内以应激依赖的方式形成。这种现象可能使我们能够利用简单模型系统中的渗透应激变化,通过光谱法分离和表征迄今难以捉摸的AmB通道形成聚集体。此外,这种应激依赖性可能是导致AmB在亨氏袢升支中肾毒性增强的原因,因为该部位处于最大的渗透应激之下。

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