AbstractThe interactions between double helical DNA and cations, specifically mono- and divalent metal ions, have recently received increased attention. Molecular dynamics simulations, solution NMR, and X-ray crystallography have all shed light on the coordination of ions in the major and minor grooves of DNA. Metal ion interactions may play key roles in the control of DNA conformation and topology, but despite progress in locating the ions and determining their precise binding modes, it remains difficult to figure out just how important ions really are. What have we learned and what remains to be done
We investigate, by first-principles density-functional calculations, fragments and periodic helices ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
AbstractThe behavior of alkaline earth metal cations (Mg2+ and Ca2+) and transition metal cations (Z...
AbstractThe interactions between double helical DNA and cations, specifically mono- and divalent met...
84 years elapsed between the announcements of the periodic table and that of the DNA double helix in...
The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
The formation of guanine quadruplexes (GQ) in DNA is crucial in telomere homeostasis and regulation ...
Metal ions play a crucial role in charge compensation, folding and stabilization of tertiary structu...
The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular ...
The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular ...
AbstractThe interaction of DNA with the polyamine spermine4+ (Spm4+), sodium ions, and water molecul...
The fine conformational subtleties of DNA structure modulate many fundamental cellular processes inc...
The structure and properties of DNA depend on the environment, in particular the ion atmosphere. Her...
The structure and properties of DNA depend on the environment, in particular the ion atmosphere. Her...
We investigate, by first-principles density-functional calculations, fragments and periodic helices ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
AbstractThe behavior of alkaline earth metal cations (Mg2+ and Ca2+) and transition metal cations (Z...
AbstractThe interactions between double helical DNA and cations, specifically mono- and divalent met...
84 years elapsed between the announcements of the periodic table and that of the DNA double helix in...
The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
The formation of guanine quadruplexes (GQ) in DNA is crucial in telomere homeostasis and regulation ...
Metal ions play a crucial role in charge compensation, folding and stabilization of tertiary structu...
The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular ...
The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular ...
AbstractThe interaction of DNA with the polyamine spermine4+ (Spm4+), sodium ions, and water molecul...
The fine conformational subtleties of DNA structure modulate many fundamental cellular processes inc...
The structure and properties of DNA depend on the environment, in particular the ion atmosphere. Her...
The structure and properties of DNA depend on the environment, in particular the ion atmosphere. Her...
We investigate, by first-principles density-functional calculations, fragments and periodic helices ...
The behaviour of mobile counterions, Na+ and K+, was analysed around a B-DNA double helix with the s...
AbstractThe behavior of alkaline earth metal cations (Mg2+ and Ca2+) and transition metal cations (Z...