ABSTRACT Molecular modeling and molecular dynamics have been employed to study the conformation and flexibility of a 15-nucleotide fragment of the plant 5S rRNA containing loop D and a single uridine bulge. Two different model built initial structures were used: one with the bulge localized inside the helical stem and another with the bulge pointing out from the helix. Several independent 700-ps-long trajectories in aqueous solution with Na1 conterions were produced for each starting structure. The bulge nucleotide inside the helix stayed in two main conformations, both of which affected the geometry of the stem part opposite the bulge. When the bulge nucleotide was located outside the helix, we found high base mobility and local backbone f...
AbstractThe helical hairpin is one of the most ubiquitous and elementary secondary structural motifs...
AbstractMolecular dynamics simulations have been applied to the DNA octamer d(GCGCA-GAAC) · d(GTTCGC...
The RNA hairpin-type pseudoknots and stem-loops structures are essential downstream elements for min...
AbstractMolecular modeling and molecular dynamics have been employed to study the conformation and f...
AbstractExplicit solvent and counterion molecular dynamics simulations have been carried out for a t...
AbstractExtra unmatched nucleotides (single base bulges) are common structural motifs in folded RNA ...
Nuclear magnetic resonance (NMR) nuclear Overhauser enhancement (NOE) data obtained for a 35-nucleot...
Global structure and flexibility of three different hairpin ribozyme constructs have been analyzed b...
AbstractConformational dynamics plays a key role in mediating specific interactions between RNAs and...
Molecular dynamics simulations have been used to explore the conformational flexibility of a PNA·DN·...
RNA molecules have several important functions in a cell. They carry the genetic information from DN...
AbstractHairpin loop structures are common motifs in folded nucleic acids. The 5′-GCGCAGC sequence i...
The single nucleotide bulge is a nucleic acid secondary structural motif of important biological rel...
The L1 stalk is a key mobile element of the large ribosomal subunit which interacts with tRNA during...
Explicit solvent and counterion molecular dynamics simulations have been carried out for a total of ...
AbstractThe helical hairpin is one of the most ubiquitous and elementary secondary structural motifs...
AbstractMolecular dynamics simulations have been applied to the DNA octamer d(GCGCA-GAAC) · d(GTTCGC...
The RNA hairpin-type pseudoknots and stem-loops structures are essential downstream elements for min...
AbstractMolecular modeling and molecular dynamics have been employed to study the conformation and f...
AbstractExplicit solvent and counterion molecular dynamics simulations have been carried out for a t...
AbstractExtra unmatched nucleotides (single base bulges) are common structural motifs in folded RNA ...
Nuclear magnetic resonance (NMR) nuclear Overhauser enhancement (NOE) data obtained for a 35-nucleot...
Global structure and flexibility of three different hairpin ribozyme constructs have been analyzed b...
AbstractConformational dynamics plays a key role in mediating specific interactions between RNAs and...
Molecular dynamics simulations have been used to explore the conformational flexibility of a PNA·DN·...
RNA molecules have several important functions in a cell. They carry the genetic information from DN...
AbstractHairpin loop structures are common motifs in folded nucleic acids. The 5′-GCGCAGC sequence i...
The single nucleotide bulge is a nucleic acid secondary structural motif of important biological rel...
The L1 stalk is a key mobile element of the large ribosomal subunit which interacts with tRNA during...
Explicit solvent and counterion molecular dynamics simulations have been carried out for a total of ...
AbstractThe helical hairpin is one of the most ubiquitous and elementary secondary structural motifs...
AbstractMolecular dynamics simulations have been applied to the DNA octamer d(GCGCA-GAAC) · d(GTTCGC...
The RNA hairpin-type pseudoknots and stem-loops structures are essential downstream elements for min...