G-quadruplexes (G4) are secondary structures formed by guanine-rich nucleic acid sequences and shown to exist in living cells where they participate in regulation of gene expression and chromosome maintenance. G-quadruplexes with solvent-exposed guanine tetrads show the tendency to associate together through cofacial stacking, which may be important for packaging of G4-forming sequences and allows for the design of higher-order G4 DNA structures. To understand the molecular driving forces for G4 association, here, we study the binding interaction between two parallel-stranded G-quadruplexes using all-atom molecular dynamics simulations. The predicted dimerization free energies show that direct binding through the 5'-G-tetrads is the most pr...
Guanine-rich DNA strands can form the so-called G-quadruplex architectures due to the formation of q...
Guanine-rich sequence motifs, which contain tracts of three consecutive guanines connected by single...
Oligodeoxyribonucleotides (ODNs) that are rich in guanines can form four stranded DNA structures kno...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- m...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- m...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- m...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- ...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- ...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- ...
G-quadruplexes are non-canonical structures of nucleic acids, in which guanine bases form planar G-t...
Aside from its biological role, the DNA molecule is fascinating because of its unique self-assembly ...
The fabrication of nanostructures based on DNA as a material to build systems capable of complex fun...
G-quadruplexes constitute a class of nucleic acid structures defined by stacked guanine tetrads (or ...
G-quadruplexes constitute a class of nucleic acid structures defined by stacked guanine tetrads (or ...
Guanine-rich DNA strands can form the so-called G-quadruplex architectures due to the formation of q...
Guanine-rich DNA strands can form the so-called G-quadruplex architectures due to the formation of q...
Guanine-rich sequence motifs, which contain tracts of three consecutive guanines connected by single...
Oligodeoxyribonucleotides (ODNs) that are rich in guanines can form four stranded DNA structures kno...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- m...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- m...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- m...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- ...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- ...
Molecular dynamics simulations have been used to study the differences between two DNA and RNA 14- ...
G-quadruplexes are non-canonical structures of nucleic acids, in which guanine bases form planar G-t...
Aside from its biological role, the DNA molecule is fascinating because of its unique self-assembly ...
The fabrication of nanostructures based on DNA as a material to build systems capable of complex fun...
G-quadruplexes constitute a class of nucleic acid structures defined by stacked guanine tetrads (or ...
G-quadruplexes constitute a class of nucleic acid structures defined by stacked guanine tetrads (or ...
Guanine-rich DNA strands can form the so-called G-quadruplex architectures due to the formation of q...
Guanine-rich DNA strands can form the so-called G-quadruplex architectures due to the formation of q...
Guanine-rich sequence motifs, which contain tracts of three consecutive guanines connected by single...
Oligodeoxyribonucleotides (ODNs) that are rich in guanines can form four stranded DNA structures kno...