Crystals of DNA have been grown in a form suitable for study by electron diffraction and electron microscopy. Preliminary electron diffraction patterns of any type that have been obtained from single crystals of highly polymerized DNA. The patterns, obtained from frozen, hydrated crystals with the beam approximately parallel to the DNA strand axis, show a hexagonal geometrical arrangement with a (1,0) Bragg spacing of 23.1 A
In aqueous solution, pure DNA forms multiple liquid crystalline and crystalline phases whose nature ...
Low dose cryoelectron microscopy has been used to record images and electron diffraction patterns of...
Well-formed hexagonal crystals of oligomeric DNA triple helices exhibit fiber-type x-ray diffraction...
Crystals of DNA have been grown in a form suitable for study by electron diffraction and electron mi...
The structure of DNA was determined in 1953 by x-ray fiber diffraction. Several attempts have been m...
The ability to self-assemble into pre-programmed architectures has made DNA become a useful molecule...
Designed self-assembled DNA crystals consist of rigid DNA motifs that are held together by cohesive ...
DNA is the fundamental molecule in all domains of life, its role in heredity is well established. Al...
The availability of chemically synthesized oligo-nucleotides of defined sequence has changed the nat...
In this work, we explore the influence of different solvents and ions on the crystallization behavio...
We use cryo-electron microscopy (cryo-EM) to study the 3D shapes of 94-bp-long DNA minicircles and a...
Three-dimensional nanometre-sized crystals of macromolecules currently resist structure elucidation ...
We use cryo-electron microscopy (cryo-EM) to study the 3D shapes of 94-bp-long DNA minicircles and a...
International audienceA-type single crystals were prepared in dilute water/acetone solutions by crys...
The aim of this project was to gain an improved understanding of how the efficiency of hole and elec...
In aqueous solution, pure DNA forms multiple liquid crystalline and crystalline phases whose nature ...
Low dose cryoelectron microscopy has been used to record images and electron diffraction patterns of...
Well-formed hexagonal crystals of oligomeric DNA triple helices exhibit fiber-type x-ray diffraction...
Crystals of DNA have been grown in a form suitable for study by electron diffraction and electron mi...
The structure of DNA was determined in 1953 by x-ray fiber diffraction. Several attempts have been m...
The ability to self-assemble into pre-programmed architectures has made DNA become a useful molecule...
Designed self-assembled DNA crystals consist of rigid DNA motifs that are held together by cohesive ...
DNA is the fundamental molecule in all domains of life, its role in heredity is well established. Al...
The availability of chemically synthesized oligo-nucleotides of defined sequence has changed the nat...
In this work, we explore the influence of different solvents and ions on the crystallization behavio...
We use cryo-electron microscopy (cryo-EM) to study the 3D shapes of 94-bp-long DNA minicircles and a...
Three-dimensional nanometre-sized crystals of macromolecules currently resist structure elucidation ...
We use cryo-electron microscopy (cryo-EM) to study the 3D shapes of 94-bp-long DNA minicircles and a...
International audienceA-type single crystals were prepared in dilute water/acetone solutions by crys...
The aim of this project was to gain an improved understanding of how the efficiency of hole and elec...
In aqueous solution, pure DNA forms multiple liquid crystalline and crystalline phases whose nature ...
Low dose cryoelectron microscopy has been used to record images and electron diffraction patterns of...
Well-formed hexagonal crystals of oligomeric DNA triple helices exhibit fiber-type x-ray diffraction...