AbstractA full understanding of RNA-mediated biology would require the knowledge of three-dimensional (3D) structures, structural flexibility, and stability of RNAs. To predict RNA 3D structures and stability, we have previously proposed a three-bead coarse-grained predictive model with implicit salt/solvent potentials. In this study, we further develop the model by improving the implicit-salt electrostatic potential and including a sequence-dependent coaxial stacking potential to enable the model to simulate RNA 3D structure folding in divalent/monovalent ion solutions. The model presented here can predict 3D structures of RNA hairpins with bulges/internal loops (<77 nucleotides) from their sequences at the corresponding experimental ion c...
AbstractThe stability of a compact RNA tertiary structure is exquisitely sensitive to the concentrat...
RNA molecules require ions to fold. The problem of how ions of differing sizes and valences drive th...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.RNA is a biopolymer that per...
AbstractA full understanding of RNA-mediated biology would require the knowledge of three-dimensiona...
RNA pseudoknots are a kind of minimal RNA tertiary structural motifs, and their three-dimensional (3...
<div><p>RNA pseudoknots are a kind of minimal RNA tertiary structural motifs, and their three-dimens...
RNAs form complex secondary and three-dimensional structures, and their biological functions highly ...
AbstractRNA molecules play critical roles in many cellular processes. Traditionally viewed as geneti...
Ribonucleic acid (RNA) is a polymeric nucleic acid that is crucial for cellular function, regulating...
RNA duplex stability depends strongly on ionic con-ditions, and inside cells RNAs are exposed to bot...
AbstractRecent experiments pointed to the potential importance of ion correlation for multivalent io...
The three-dimensional (3D) structures of Ribonucleic acid (RNA) molecules are essential to understan...
AbstractSingle-stranded junctions/loops are frequently occurring structural motifs in nucleic acid s...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] RNA (Ribonucleic a...
We present a new, nucleotide-level model for RNA, oxRNA, based on the coarse-graining methodology re...
AbstractThe stability of a compact RNA tertiary structure is exquisitely sensitive to the concentrat...
RNA molecules require ions to fold. The problem of how ions of differing sizes and valences drive th...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.RNA is a biopolymer that per...
AbstractA full understanding of RNA-mediated biology would require the knowledge of three-dimensiona...
RNA pseudoknots are a kind of minimal RNA tertiary structural motifs, and their three-dimensional (3...
<div><p>RNA pseudoknots are a kind of minimal RNA tertiary structural motifs, and their three-dimens...
RNAs form complex secondary and three-dimensional structures, and their biological functions highly ...
AbstractRNA molecules play critical roles in many cellular processes. Traditionally viewed as geneti...
Ribonucleic acid (RNA) is a polymeric nucleic acid that is crucial for cellular function, regulating...
RNA duplex stability depends strongly on ionic con-ditions, and inside cells RNAs are exposed to bot...
AbstractRecent experiments pointed to the potential importance of ion correlation for multivalent io...
The three-dimensional (3D) structures of Ribonucleic acid (RNA) molecules are essential to understan...
AbstractSingle-stranded junctions/loops are frequently occurring structural motifs in nucleic acid s...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] RNA (Ribonucleic a...
We present a new, nucleotide-level model for RNA, oxRNA, based on the coarse-graining methodology re...
AbstractThe stability of a compact RNA tertiary structure is exquisitely sensitive to the concentrat...
RNA molecules require ions to fold. The problem of how ions of differing sizes and valences drive th...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.RNA is a biopolymer that per...