DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natural biomolecular systems yet exhibit robustly programmable behavior. While many important biological processes involve dynamic interactions between components associated with phospholipid membranes, little progress has been made toward creating synthetic mimics of such interfacial systems. We report the assembly and characterization of cholesterol-labeled DNA origami “barges” capable of reversible association with and lateral diffusion on supported lipid bilayers. Using single-particle fluorescence microscopy, we show that these DNA barges rapidly and stably embed in lipid bilayers and exhibit Brownian diffusion in a manner dependent on both c...
DNA origami is a state-of-the-art technology that enables the fabrication of nano-objects with defin...
DNA nanotechnology allows for the programmable self-assembly of nanostructures of arbitrary shapes a...
Mimicking enzyme function and increasing performance of naturally evolved proteins is one of the mos...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
DNA nanostructures offer the possibility to mimic functional biological membrane components due to t...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
Recently, DNA origami became a powerful tool for custom-shaped functional biomolecules. In this pape...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
Biological membranes fulfill many important tasks within living organisms. In addition to separating...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
DNA nanostructures offer the possibility to mimic functional biological membrane components due to t...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
We report a synthetic biology-inspired approach for the engineering of amphipathic DNA origami struc...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
DNA origami is a state-of-the-art technology that enables the fabrication of nano-objects with defin...
DNA nanotechnology allows for the programmable self-assembly of nanostructures of arbitrary shapes a...
Mimicking enzyme function and increasing performance of naturally evolved proteins is one of the mos...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
DNA nanostructures offer the possibility to mimic functional biological membrane components due to t...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
Recently, DNA origami became a powerful tool for custom-shaped functional biomolecules. In this pape...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
Biological membranes fulfill many important tasks within living organisms. In addition to separating...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
DNA nanostructures offer the possibility to mimic functional biological membrane components due to t...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
We report a synthetic biology-inspired approach for the engineering of amphipathic DNA origami struc...
Cells use membrane proteins as gatekeepers to transport ions and molecules, catalyze reactions, rela...
DNA origami is a state-of-the-art technology that enables the fabrication of nano-objects with defin...
DNA nanotechnology allows for the programmable self-assembly of nanostructures of arbitrary shapes a...
Mimicking enzyme function and increasing performance of naturally evolved proteins is one of the mos...