The binding of zinc–porphyrin-anchored linear DNA to supported lipid membranes was studied using quartz crystal microbalance with dissipation monitoring (QCM-D). The hydrophobic anchor is positioned at the ninth base of 39-base-pair-long DNA sequences, ensuring that the DNA is positioned parallel to the membrane surface when bound, an important prerequisite for using this type of construct for the creation of two-dimensional (2D) DNA patterns on the surface. The anchor consists of a porphyrin group linked to the DNA via two or three phenylethynylene moieties. Double-stranded DNA where one of the strands was modified with either of these anchors displayed irreversible binding, although binding to the membrane was faster for the derivatives w...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
DNA-based molecular rulers enable scientists to determine important parameters across biology, from ...
The binding of zinc–porphyrin-anchored linear DNA to supported lipid membranes was studied using qua...
The binding of zinc–porphyrin-anchored linear DNA to supported lipid membranes was studied using qua...
DNA nanotechnology has focused on the creation of complex structures using DNA as building blocks. D...
We have synthesized and studied a supramolecular system comprising a 39-mer DNA with porphyrin-modif...
No strings attached: At least three attachment points are needed to align a two-dimensional DNA nano...
In the present series of papers, we describe the results of a systematic study on the anchoring of c...
Tetraphenyl porphyrin substituted deoxyuridine was used as a building block to create discrete multi...
Decorating lipid bilayers with oligonucleotides has great potential for both fundamental studies and...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
In this work we examine the trapping and conversion of visible light energy into chemical energy usi...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Porphyrin moieties were rigidly attached to DNA to generate an accurate molecular ruler. Molecular r...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
DNA-based molecular rulers enable scientists to determine important parameters across biology, from ...
The binding of zinc–porphyrin-anchored linear DNA to supported lipid membranes was studied using qua...
The binding of zinc–porphyrin-anchored linear DNA to supported lipid membranes was studied using qua...
DNA nanotechnology has focused on the creation of complex structures using DNA as building blocks. D...
We have synthesized and studied a supramolecular system comprising a 39-mer DNA with porphyrin-modif...
No strings attached: At least three attachment points are needed to align a two-dimensional DNA nano...
In the present series of papers, we describe the results of a systematic study on the anchoring of c...
Tetraphenyl porphyrin substituted deoxyuridine was used as a building block to create discrete multi...
Decorating lipid bilayers with oligonucleotides has great potential for both fundamental studies and...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
In this work we examine the trapping and conversion of visible light energy into chemical energy usi...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Porphyrin moieties were rigidly attached to DNA to generate an accurate molecular ruler. Molecular r...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
DNA-based molecular rulers enable scientists to determine important parameters across biology, from ...