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Nucleic Acids Res ; 45(21): 12057-12068, 2017 Dec 01.
Article in English | MEDLINE | ID: mdl-29088457

ABSTRACT

We have developed a novel approach for creating membrane-spanning protein-based pores. The construction principle is based on using well-defined, circular DNA nanostructures to arrange a precise number of pore-forming protein toxin monomers. We can thereby obtain, for the first time, protein pores with specifically set diameters. We demonstrate this principle by constructing artificial alpha-hemolysin (αHL) pores. The DNA/αHL hybrid nanopores composed of twelve, twenty or twenty-six monomers show stable insertions into lipid bilayers during electrical recordings, along with steady, pore size-dependent current levels. Our approach successfully advances the applicability of nanopores, in particular towards label-free studies of single molecules in large nanoscaled biological structures.


Subject(s)
Bacterial Toxins/chemistry , DNA, Circular/chemistry , Hemolysin Proteins/chemistry , Nanopores , Lipid Bilayers , Models, Molecular , Nanopores/ultrastructure , Nanostructures/chemistry , Nanotechnology
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