DNA nanotechnology makes use of hydrophobically modified constructs to create synthetic membrane protein mimics. However, nucleic acid structures exhibit poor insertion efficiency, leading to a low activity of membrane-spanning DNA protein mimics. It is suggested that non-ionic surfactants improve insertion efficiency, partly by disrupting hydrophobicity-mediated clusters. Here, we employed confocal microscopy and single-molecule transmembrane current measurements to assess the effects of the non-ionic surfactant octylpolyoxyethylene (oPOE) on the clustering behavior and membrane activity of cholesterol-modified DNA nanostructures. Our findings uncover the role of aggregation in preventing bilayer interactions of hydrophobically decorated c...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
DNA nanotechnology provides methods for building custom membrane-interacting nanostructures with div...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
Funder: Friedrich Naumann FoundationFunder: Cambridge Philosophical SocietyFunder: Winton Programme ...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
DNA nanotechnology has emerged as a promising method for designing spontaneously inserting and fully...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
ABSTRACT: Lipid modifications provide efficient targeting of oligonucleotides to live cell membranes...
Funder: Wellcome TrustBiology has evolved a variety of agents capable of permeabilizing and disrupti...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
Biology has evolved a variety of agents capable of permeabilising and disrupting lipid membranes, fr...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
DNA nanotechnology provides methods for building custom membrane-interacting nanostructures with div...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
Funder: Friedrich Naumann FoundationFunder: Cambridge Philosophical SocietyFunder: Winton Programme ...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
DNA nanotechnology has emerged as a promising method for designing spontaneously inserting and fully...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
ABSTRACT: Lipid modifications provide efficient targeting of oligonucleotides to live cell membranes...
Funder: Wellcome TrustBiology has evolved a variety of agents capable of permeabilizing and disrupti...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
Biology has evolved a variety of agents capable of permeabilising and disrupting lipid membranes, fr...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
DNA nanotechnology provides methods for building custom membrane-interacting nanostructures with div...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...