RNA hairpin loops represent important RNA motifs with indispensable biological functions in RNA folding and tertiary interactions, with the 5′-UNCG-3′ and 5′-GNRA-3′ families being the most abundant. Molecular dynamics simulations represent a powerful method to investigate the structure, folding, and function of these tetraloops (TLs), but previous AMBER force fields were unable to maintain even the native structure of small TL RNAs. Here, we have used Replica Exchange Molecular Dynamics (REMD) with our recent reparameterization of AMBER RNA force field to study the folding of RNA hairpins containing representatives UNCG and GNRA TLs. We find that in each case, we are able to reach conformations within 2 Å of the native structure, in contra...
Atomically detailed simulations of RNA folding have proven very challenging in view of the difficult...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
5Abstract We have developed a multiscale approach for RNA folding using dis-6crete molecular dynamic...
The computer-aided folding of biomolecules, particularly RNAs, is one of the most difficult challeng...
The computer-aided folding of biomolecules, particularly RNAs, is one of the most difficult challeng...
The folding of a small RNA tetraloop hairpin is studied based on intensive molecular dynamics simula...
ABSTRACT: Hairpin secondary structural elements play important roles in the folding and function of ...
Atomistic molecular dynamics simulations represent an established technique for investigation of RNA...
RNA hairpins play a pivotal role in a diverse range of cellular functions, and are integral componen...
We introduce a method for predicting RNA folding pathways, with an application to the most important...
Understanding the folding mechanism of RNAs is critical for studying their structure-function relati...
The RNA hairpin loops represent important RNA topologies with indispensable biological functions in ...
Molecular dynamics (MD) simulations have become increasingly powerful and can now describe the foldi...
Barrier trees consisting of local minima and their connecting saddle points imply a natural coarse-g...
International audienceIf the A-form helix is the major structural motif found in RNA, the loops that...
Atomically detailed simulations of RNA folding have proven very challenging in view of the difficult...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
5Abstract We have developed a multiscale approach for RNA folding using dis-6crete molecular dynamic...
The computer-aided folding of biomolecules, particularly RNAs, is one of the most difficult challeng...
The computer-aided folding of biomolecules, particularly RNAs, is one of the most difficult challeng...
The folding of a small RNA tetraloop hairpin is studied based on intensive molecular dynamics simula...
ABSTRACT: Hairpin secondary structural elements play important roles in the folding and function of ...
Atomistic molecular dynamics simulations represent an established technique for investigation of RNA...
RNA hairpins play a pivotal role in a diverse range of cellular functions, and are integral componen...
We introduce a method for predicting RNA folding pathways, with an application to the most important...
Understanding the folding mechanism of RNAs is critical for studying their structure-function relati...
The RNA hairpin loops represent important RNA topologies with indispensable biological functions in ...
Molecular dynamics (MD) simulations have become increasingly powerful and can now describe the foldi...
Barrier trees consisting of local minima and their connecting saddle points imply a natural coarse-g...
International audienceIf the A-form helix is the major structural motif found in RNA, the loops that...
Atomically detailed simulations of RNA folding have proven very challenging in view of the difficult...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
5Abstract We have developed a multiscale approach for RNA folding using dis-6crete molecular dynamic...