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Natural channel protein inserts and functions in a completely artificial solid-supported bilayer membrane

机译:天然通道蛋白插入并在完全人工固相支持的双层膜中起作用

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摘要

Reconstitution of membrane proteins in artificial membrane systems creates a platform for exploring their potential for pharmacological or biotechnological applications. Previously, we demonstrated amphiphilic block copolymers as promising building blocks for artificial membranes with long-term stability and tailorable structural parameters. However, the insertion of membrane proteins has not previously been realized in a large-area, stable, and solid-supported artificial membrane. Here, we show the first, preliminary model of a channel membrane protein that is functionally incorporated in a completely artificial polymer, tethered, solid-supported bilayer membrane (TSSBM). Unprecedented ionic transport characteristics that differ from previous results on protein insertion into planar, free-standing membranes, are identified. Our findings mark a change in understanding protein insertion and ion flow within natural channel proteins when inserted in an artificial TSSBM, thus holding great potential for numerous applications such as drug screening, trace analyzing, and biosensing.
机译:人工膜系统中膜蛋白的重建为探索其在药理或生物技术应用中的潜力创造了一个平台。先前,我们证明了两亲嵌段共聚物是具有长期稳定性和可定制结构参数的有前途的人造膜构建基。但是,以前尚未在大面积,稳定且固体支持的人造膜中实现膜蛋白的插入。在这里,我们显示了通道膜蛋白的第一个初步模型,该蛋白在功能上并入了完全人工的聚合物,栓系的,固体支持的双层膜(TSSBM)中。确定了前所未有的离子转运特性,该特性与以前将蛋白质插入平面的独立膜的结果不同。我们的发现标志着在将蛋白质插入人工TSSBM中后,对蛋白质插入和天然通道蛋白质内离子流的理解有了改变,因此在药物筛选,痕量分析和生物传感等众多应用中具有巨大潜力。

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