Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic biology, and cell biology research. To optimize DNA anchoring, an understanding of DNA–membrane interactions in terms of binding strength, extent, and structural dynamics is required. Here we use experiments and molecular dynamics (MD) simulations to determine how the membrane binding of cholesterol-modified DNA depends on electrostatic and steric factors involving the lipid headgroup charge, duplexed or single-stranded DNA, and the buffer composition. The experiments distinguish between free and membrane vesicle-bound DNA and thereby reveal the surface density of anchored DNA and its binding affinity, something which had previously not been...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
AbstractWe use membrane-anchored DNA as model adhesion receptors between lipid vesicles. By studying...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Motivated by recent experimental observations of a rapid spontaneous DNA coil-globule transition on ...
We present experimental results on the interaction of DNA macromolecules with cationic lipid membran...
Motivated by recent experimental observations of a rapid spontaneous DNA coil-globule transition on ...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
AbstractWe use membrane-anchored DNA as model adhesion receptors between lipid vesicles. By studying...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Motivated by recent experimental observations of a rapid spontaneous DNA coil-globule transition on ...
We present experimental results on the interaction of DNA macromolecules with cationic lipid membran...
Motivated by recent experimental observations of a rapid spontaneous DNA coil-globule transition on ...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...