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首页> 外文期刊>Angewandte Chemie >Directional Potassium Transport through a Unimolecular Peptide Channel
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Directional Potassium Transport through a Unimolecular Peptide Channel

机译:定向钾通过一个单模肽通道运输

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摘要

Three unimolecular peptide channels have been designed and prepared by using the beta-helical conformation of gramicidin A (gA). The new peptides bear one to three NH3+ groups at the N-end and one to three CO2- groups at the C-end. These zwitterionic peptides were inserted into lipid bilayers in an orientation-selective manner. Conductance experiments on planar lipid bilayers showed that this orientation bias could lead to observable directional K+ transport under multi-channel conditions. This directional transport behavior can further cause the generation of a current across a planar bilayer without applying a voltage. More importantly, in vesicles with identical external and internal KCl concentrations, the channels can pump K+ across the lipid bilayer and cause a membrane potential.
机译:通过使用甘霉素A(Ga)的β螺旋构象来设计和制备三个单分子肽通道。 新肽在N末端携带一至三个NH 3 +基团,在C末端一键。 将这些两性离子肽以取向选择性方式插入脂质双层。 平面脂质双层的电导实验表明,在多通道条件下,该取向偏置可能导致可观察的定向K +传输。 这种定向传输行为可以进一步使得在平面双层穿过平面的电流而不施加电压。 更重要的是,在具有相同外部和内部KCL浓度的囊泡中,通道可以在脂质双层穿过脂质双层泵+ +膜电位。

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