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首页> 外文期刊>IEE Proceedings. Part M, Nanobiotechnology >Controlled delivery of membrane proteins to artificial lipid bilayers by nystatin-ergosterol modulated vesicle fusion
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Controlled delivery of membrane proteins to artificial lipid bilayers by nystatin-ergosterol modulated vesicle fusion

机译:制霉菌素-麦角固醇调节的囊泡融合控制膜蛋白向人工脂质双层的递送

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The study of ion channels and other membrane proteins and their potential use as biosensors and drug screening targets require their reconstitution in an artificial membrane. These applications would greatly benefit from microfabricated devices in which stable artificial lipid bilayers can be rapidly and reliably formed. However, the amount of protein delivered to the bilayer must be carefully controlled. A vesicle fusion technique is investigated where composite ion channels of the polyene antibiotic nystatin and the sterol ergosterol are employed to render protein-carrying vesicles fusogenic. After fusion with an ergosterol-free artificial bilayer, the nystatin-ergosterol channels do not dissociate immediately and thus cause a transient current signal that marks the vesicle fusion event. Experimental pitfalls of this method were identified, the influence of the nystatin and ergosterol concentration on the fusion rate and the shape of the fusion event marker was explored, and the number of different lipid species was reduced. Under these conditions, the beta-amyloid peptide could be delivered in a controlled manner to a standard planar bilayer. Additionally, electrical recordings were obtained of vesicles fusing with a planar lipid bilayer in a microfabricated device, demonstrating the suitability of nystatin-ergosterol modulated vesicle fusion for protein delivery within microsystems.
机译:离子通道和其他膜蛋白的研究及其作为生物传感器和药物筛选靶标的潜在用途要求将它们重构在人造膜中。这些应用将极大地受益于微型制造的设备,其中可以快速而可靠地形成稳定的人造脂质双层。但是,必须小心控制输送到双层的蛋白质量。研究了囊泡融合技术,其中采用多烯抗生素制霉菌素和固醇麦角固醇的复合离子通道使携带蛋白质的囊泡融合。与不含麦角固醇的人造双层融合后,制霉菌素-麦角甾醇通道不会立即解离,因此会产生一个瞬态电流信号,该信号标记了囊泡融合事件。鉴定了该方法的实验缺陷,研究了制霉菌素和麦角固醇浓度对融合速率和融合事件标记物形状的影响,并减少了不同脂质种类的数量。在这些条件下,β-淀粉样肽可以以受控方式递送至标准平面双层。另外,在微制造的装置中获得了与平面脂质双层融合的囊泡的电记录,证明了制霉菌素-麦角固醇调节的囊泡融合在微系统中用于蛋白质递送的适用性。

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