Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine-guanine, cytosine-cytosine, adenine-thymine, and thymine-thymine, display much higher stability than the Watson-Crick paired DNA duplexes; these broaden the range of applications for DNA nanotechnology. Here we focus on silver-stabilized guanine duplexes in water. Using hybrid quantum mechanics/molecular mechanics simulations, we propose an atomic structure for the Ag+-mediated guanine duplex with two nucleobases per strand, G2-Ag2+-G2. We then compare experimental and time-dependent density functional theory-simulated electronic circular dichroism (ECD) spectra to validate our results. Both experimental and simulated ECD share two negative peaks ar...
DNA oligomers can form silver-mediated duplexes, stable in gas phase and solution, with potential fo...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine-guanine...
Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine-guanine...
Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine–guanine...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
We report a combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics and time-depen...
We report a combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics and time-depen...
We report a combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics and time-depen...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Hydrogen bonding between nucleobases produces diverse DNA structural motifs, including canonical dup...
DNA oligomers can form silver-mediated duplexes, stable in gas phase and solution, with potential fo...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine-guanine...
Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine-guanine...
Recent experimental duplexes of DNA stabilized by Ag cations, pairing homostrands of guanine–guanine...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
We report a combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics and time-depen...
We report a combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics and time-depen...
We report a combined quantum mechanics/molecular mechanics (QM/MM) molecular dynamics and time-depen...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnolog...
Hydrogen bonding between nucleobases produces diverse DNA structural motifs, including canonical dup...
DNA oligomers can form silver-mediated duplexes, stable in gas phase and solution, with potential fo...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...
In this dissertation we focus on better understanding the interactions of silver with DNA, a topic w...