Related Experiment Video
Updated: Oct 6, 2025

Analyzing and Building Nucleic Acid Structures with 3DNA
Published on: April 26, 2013
Sequence-dependent structural properties of B-DNA: what have we learned in 40 years?
Gabriela da Rosa1,2, Leandro Grille1,2, Victoria Calzada3
1Computational Biophysics Group, Department of Biological Sciences, CENUR Litoral Norte, Universidad de la República, Salto, Uruguay.
Abstract:
The structure of B-DNA, the physiological form of the DNA molecule, has been a central topic in biology, chemistry and physics. Far from uniform and rigid, the double helix was revealed as a flexible and structurally polymorphic molecule. Conformational changes that lead to local and global changes in the helix geometry are mediated by a complex choreography of base and backbone rearrangements affecting the ability of the B-DNA to recognize ligands and consequently on its functionality. In this sense, the knowledge obtained from the sequence-dependent structural properties of B-DNA has always been thought crucial to rationalize how ligands and, most notably, proteins recognize B-DNA and modulate its activity, i.e. the structural basis of gene regulation. Honouring the anniversary of the first high-resolution X-ray structure of a B-DNA molecule, in this contribution, we present the most important discoveries of the last 40 years on the sequence-dependent structural and dynamical properties of B-DNA, from the early beginnings to the current frontiers in the field.
Related Concept Videos
The DNA Helix
DNA as a Genetic Template
Fixing Double-strand Breaks
Single-Strand DNA Binding Proteins
Nucleic Acid Structure
DNA Structure
DNA...
DNA Helicases

