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Synthetic Ion Channels via Self-Assembly: a Route for Embedding Porous Polyoxometalate Nanocapsules in Lipid Bilayer Membranes

机译:通过自组装的合成离子通道:在脂质双层膜中嵌入多孔多金属氧酸盐纳米胶囊的途径。

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摘要

Porous polyoxometalate nanocapsules of Keplerate type are known to exhibit the functionality of biological ion channels, however, their use as artificial ion channel is tempered by the high negative charge of the capsules, which renders their spontaneous incorporation into a lipid bilayer membrane unlikely. In this letter we report coarse-grained molecular dynamics simulations that demonstrate a route for embedding negatively charged nanocapsules into lipid bilayer membranes via self-assembly. A homogeneous mixture of water, cationic detergent, and phospholipid was observed to spontaneously self-assemble around the nanocapsule into a layered, liposome-like structure, where the nanocapsule was enveloped by a layer of cationic detergent followed by a layer of phospholipid. Fusion of such a layered liposome with a lipid bilayer membrane was observed to embed the nanocapsule into the lipid bilayer. The resulting assembly was found to remain stable even after the surface of the capsule was exposed to electrolyte. In the latter conformation, water was observed to flow into and out of the capsule as Na+ cations entered, suggesting that a polyoxometalate nanocapsule can form a functional synthetic ion channel in a lipid bilayer membrane.
机译:已知Keplerate类型的多孔多金属氧酸盐纳米胶囊具有生物离子通道的功能,但是,由于胶囊的高负电荷限制了它们用作人工离子通道的用途,这使其不可能自发掺入脂质双层膜中。在这封信中,我们报告了粗粒度的分子动力学模拟,这些模拟表明了通过自组装将带负电的纳米胶囊嵌入脂质双层膜的途径。观察到水,阳离子去污剂和磷脂的均匀混合物在纳米胶囊周围自发自组装成层状脂质体状结构,其中纳米胶囊被阳离子去污剂层和磷脂层包裹。观察到这种层状脂质体与脂质双层膜融合,从而将纳米胶囊嵌入脂质双层中。发现即使在胶囊的表面暴露于电解质之后,所得的组件也保持稳定。在后一种构型中,观察到水随着Na + 阳离子进入而流入和流出胶囊,这表明多金属氧酸盐纳米胶囊可以在脂质双层膜中形成功能性合成离子通道。

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