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A monodisperse transmembrane α-helical peptide barrel.

机译:单分散跨膜α-螺旋肽桶。

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摘要

The fabrication of monodisperse transmembrane barrels formed from short synthetic peptides has not been demonstrated previously. This is in part because of the complexity of the interactions between peptides and lipids within the hydrophobic environment of a membrane. Here we report the formation of a transmembrane pore through the self-assembly of 35 amino acid α-helical peptides. The design of the peptides is based on the C-terminal D4 domain of the Escherichia coli polysaccharide transporter Wza. By using single-channel current recording, we define discrete assembly intermediates and show that the pore is most probably a helix barrel that contains eight D4 peptides arranged in parallel. We also show that the peptide pore is functional and capable of conducting ions and binding blockers. Such α-helix barrels engineered from peptides could find applications in nanopore technologies such as single-molecule sensing and nucleic-acid sequencing.
机译:以前尚未证明由短合成肽形成的单分散跨膜桶的制备。这部分是由于在膜的疏水环境中肽与脂质之间相互作用的复杂性。在这里,我们报告通过35个氨基酸的α-螺旋肽的自组装形成跨膜孔。肽的设计基于大肠杆菌多糖转运蛋白Wza的C端D4结构域。通过使用单通道电流记录,我们定义了离散的装配中间体,并表明该孔很可能是一个螺旋桶,其中包含八个平行排列的D4肽。我们还表明,肽孔具有功能性并且能够传导离子和结合阻滞剂。这种由肽改造而成的α-螺旋桶可以在纳米孔技术中找到应用,例如单分子传感和核酸测序。

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