DNA-Tile Structures Induce Ionic Currents through Lipid Membranes

Self-assembled DNA nanostructures have been used to create man-made transmembrane channels in lipid bilayers. Here, we present a DNA-tile structure with a nominal subnanometer channel and cholesterol-tags for membrane anchoring. With an outer diameter of 5 nm and a molecular weight of 45 kDa, the di...

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Veröffentlicht in:Nano letters 2015-05, Vol.15 (5), p.3134-3138
Hauptverfasser: Göpfrich, Kerstin, Zettl, Thomas, Meijering, Anna E. C, Hernández-Ainsa, Silvia, Kocabey, Samet, Liedl, Tim, Keyser, Ulrich F
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Sprache:eng
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Zusammenfassung:Self-assembled DNA nanostructures have been used to create man-made transmembrane channels in lipid bilayers. Here, we present a DNA-tile structure with a nominal subnanometer channel and cholesterol-tags for membrane anchoring. With an outer diameter of 5 nm and a molecular weight of 45 kDa, the dimensions of our synthetic nanostructure are comparable to biological ion channels. Because of its simple design, the structure self-assembles within a minute, making its creation scalable for applications in biology. Ionic current recordings demonstrate that the tile structures enable ion conduction through lipid bilayers and show gating and voltage-switching behavior. By demonstrating the design of DNA-based membrane channels with openings much smaller than that of the archetypical six-helix bundle, our work showcases their versatility inspired by the rich diversity of natural membrane components.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.5b00189