RNA hairpins play a pivotal role in a diverse range of cellular functions, and are integral components of ribozymes, mRNA, and riboswitches. However, the mechanistic and kinetic details of RNA hairpin folding, which are key determinants of most of its biological functions, are poorly understood. In this work, we use the discrete path sampling (DPS) approach to explore the energy landscapes of two RNA tetraloop hairpins, and provide insights into their folding mechanisms and kinetics in atomistic detail. Our results show that the potential energy landscapes have a distinct funnel-like bias toward the folded hairpin state, consistent with efficient structure-seeking properties. Mechanistic and kinetic information is analyzed in terms of kinet...
RNA hairpin loops represent important RNA motifs with indispensable biological functions in RNA fold...
RNA hairpins are ubiquitous structural elements in biological RNAs, where they have the potential to...
The sequence-dependent folding landscapes of nucleic acid hairpins reflect much of the complexity of...
AbstractThe complexity of RNA hairpin folding arises from the interplay between the loop formation, ...
ABSTRACT The complexity of RNA hairpin folding arises from the interplay between the loop formation,...
AbstractBased on an ensemble of kinetically accessible conformations, we propose a new analytical mo...
AbstractWe investigate the microsecond-timescale kinetics of the RNA hairpin ga∗cUUCGguc. The fluore...
Recent experiments show that the kinetics of hairpin formation in RNA or ss-DNA is best described as...
The folding of a small RNA tetraloop hairpin is studied based on intensive molecular dynamics simula...
There is little experimental knowledge on the sequence dependent rate of hairpin formation in RNA. W...
The duration of structural transitions in biopolymers is only a fraction of the time spent searching...
We report a set of atomistic folding/unfolding simulations for the hairpin ribozyme using a monte ca...
Nucleic acid hairpins provide a powerful model system for probing the formation of secondary structu...
Molecular dynamics (MD) simulations have become increasingly powerful and can now describe the foldi...
Abstract The rugged nature of the RNA folding landscape is determined by a number of conflicting int...
RNA hairpin loops represent important RNA motifs with indispensable biological functions in RNA fold...
RNA hairpins are ubiquitous structural elements in biological RNAs, where they have the potential to...
The sequence-dependent folding landscapes of nucleic acid hairpins reflect much of the complexity of...
AbstractThe complexity of RNA hairpin folding arises from the interplay between the loop formation, ...
ABSTRACT The complexity of RNA hairpin folding arises from the interplay between the loop formation,...
AbstractBased on an ensemble of kinetically accessible conformations, we propose a new analytical mo...
AbstractWe investigate the microsecond-timescale kinetics of the RNA hairpin ga∗cUUCGguc. The fluore...
Recent experiments show that the kinetics of hairpin formation in RNA or ss-DNA is best described as...
The folding of a small RNA tetraloop hairpin is studied based on intensive molecular dynamics simula...
There is little experimental knowledge on the sequence dependent rate of hairpin formation in RNA. W...
The duration of structural transitions in biopolymers is only a fraction of the time spent searching...
We report a set of atomistic folding/unfolding simulations for the hairpin ribozyme using a monte ca...
Nucleic acid hairpins provide a powerful model system for probing the formation of secondary structu...
Molecular dynamics (MD) simulations have become increasingly powerful and can now describe the foldi...
Abstract The rugged nature of the RNA folding landscape is determined by a number of conflicting int...
RNA hairpin loops represent important RNA motifs with indispensable biological functions in RNA fold...
RNA hairpins are ubiquitous structural elements in biological RNAs, where they have the potential to...
The sequence-dependent folding landscapes of nucleic acid hairpins reflect much of the complexity of...