Related Experiment Video
Updated: May 3, 2026

Analyzing and Building Nucleic Acid Structures with 3DNA
Published on: April 26, 2013
Quantum mechanical studies of DNA and LNA
Troels Koch1, Irene Shim, Morten Lindow
11 Santaris Pharma A/S , Hørsholm, Denmark .
Abstract:
Quantum mechanical (QM) methodology has been employed to study the structure activity relations of DNA and locked nucleic acid (LNA). The QM calculations provide the basis for construction of molecular structure and electrostatic surface potentials from molecular orbitals. The topologies of the electrostatic potentials were compared among model oligonucleotides, and it was observed that small structural modifications induce global changes in the molecular structure and surface potentials. Since ligand structure and electrostatic potential complementarity with a receptor is a determinant for the bonding pattern between molecules, minor chemical modifications may have profound changes in the interaction profiles of oligonucleotides, possibly leading to changes in pharmacological properties. The QM modeling data can be used to understand earlier observations of antisense oligonucleotide properties, that is, the observation that small structural changes in oligonucleotide composition may lead to dramatic shifts in phenotypes. These observations should be taken into account in future oligonucleotide drug discovery, and by focusing more on non RNA target interactions it should be possible to utilize the exhibited property diversity of oligonucleotides to produce improved antisense drugs.
Related Concept Videos
The DNA Helix
The DNA Helix
DNA as a Genetic Template
Lagging Strand Synthesis
There are several major differences between synthesis of the leading strand and synthesis of the lagging strand. 1) Leading strand synthesis happens in the direction of replication fork opening, whereas lagging strand synthesis happens in the...
Nucleic Acid Structure
DNA Structure
DNA...
DNA Topoisomerases
Types and Mechanism of action
Topoisomerases are divided into two main types. ...

