Engineering the synthetic nanopores through lipid bilayer membrane to access the interior of a cell is a long persisting challenge in biotechnology. Here, we demonstrate the stability and dynamics of a tile-based 6-helix DNA nanotube (DNT) embedded in POPC lipid bilayer using the analysis of 0.2 mu s long equilibrium MD simulation trajectories. We observe that the head groups of the lipid molecules close to the lumen cooperatively tilt towards the hydrophilic sugar-phosphate backbone of DNA and form a toroidal structure around the patch of DNT protruding in the membrane. Further, we explore the effect of ionic concentrations to the in-solution structure and stability of the lipid-DNT complex. Transmembrane ionic current measurements for the...
A DNA molecule passing through a nanopore in a liner and sequential fashion allows for unprecedented...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Engineering the synthetic nanopores through lipid bilayer membrane to access the interior of a cell ...
Recently developed DNA-based analogues of membrane proteins advance synthetic biology. A fundamental...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
DNA origami offers the possibility of developing novel membrane-spanning pores with potential applic...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Membrane-spanning nanopores from folded DNA are a recent example of biomimetic man-made nanostructur...
DNA nanotechnology has revolutionised our capability to shape and control three-dimensional structur...
DNA nanotechnology has emerged as a promising method for designing spontaneously inserting and fully...
Carbon nanotubes (CNTs) have been considered a prominent nano-channel in cell membranes because of t...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...
A DNA molecule passing through a nanopore in a liner and sequential fashion allows for unprecedented...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
Engineering the synthetic nanopores through lipid bilayer membrane to access the interior of a cell ...
Recently developed DNA-based analogues of membrane proteins advance synthetic biology. A fundamental...
Recently developed DNA-based analogues of membrane proteins have advanced synthetic biology. A funda...
DNA origami offers the possibility of developing novel membrane-spanning pores with potential applic...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Recently developed synthetic membrane pores composed of folded DNA enrich the current range of natur...
Membrane-spanning nanopores from folded DNA are a recent example of biomimetic man-made nanostructur...
DNA nanotechnology has revolutionised our capability to shape and control three-dimensional structur...
DNA nanotechnology has emerged as a promising method for designing spontaneously inserting and fully...
Carbon nanotubes (CNTs) have been considered a prominent nano-channel in cell membranes because of t...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
ABSTRACT: DNA nanotechnology excels at rationally designing bottom-up structures that can functional...
A DNA molecule passing through a nanopore in a liner and sequential fashion allows for unprecedented...
A macromolecular nanopore inserted into a membrane may perturb the dynamic organization of the surro...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...