AbstractRNA-protein interactions are essential to a wide range of biological processes. In this paper, a 0.6-ns molecular dynamics simulation of the sequence-specific interaction of human U1A protein with hairpin II of U1 snRNA in solution, together with a 1.2-ns simulation of the free RNA hairpin, is reported. Compared to the findings in the x-ray structure of the complex, most of the interactions remained stable. The nucleotide U8, one of the seven conserved nucleotides AUUGCAC in the loop region, was unusually flexible during the simulation, leading to a loss of direct contacts with the protein, in contrast to the situation in the x-ray structure. Instead the sugar-phosphate backbone of nucleotide C15 was found to form several interactio...
With both catalytic and genetic functions, ribonucleic acid (RNA) is perhaps the most pluripotent ch...
We use molecular dynamics simulations to compare the conformational structure and dynamics of a 21-b...
Despite their importance, our understanding of noncovalent RNA–protein interactions is incomplete. T...
AbstractRNA-protein interactions are essential to a wide range of biological processes. In this pape...
AbstractA 2200-ps molecular dynamics (MD) simulation of the U2 snRNA hairpin IV/U2B″ complex was per...
AbstractBackground: Human U1A protein binds to hairpin II of U1 small nuclear RNA (snRNA) and, toget...
AbstractThe structure of a complex between the RNA-binding domain of the small nuclear ribonucleopro...
AbstractBackground: Human U1A protein binds to hairpin II of U1 small nuclear RNA (snRNA) and, toget...
A detailed computational analysis of 32 protein-RNA complexes is presented. A number of physical and...
The protein U1A is a component of the U1 snRNP, a subunit of the spliceosome, which splices most euk...
With both catalytic and genetic functions, ribonucleic acid (RNA) is perhaps the most pluripotent ch...
Many critical processes in the cell involve direct binding between RNAs and proteins, making it impe...
Many critical processes in the cell involve direct binding between RNAs and proteins, making it impe...
A detailed computational analysis of 32 protein¿RNA complexes is presented. A number of physical and...
RNA molecules are now known to be involved in the processing of genetic information at all levels, t...
With both catalytic and genetic functions, ribonucleic acid (RNA) is perhaps the most pluripotent ch...
We use molecular dynamics simulations to compare the conformational structure and dynamics of a 21-b...
Despite their importance, our understanding of noncovalent RNA–protein interactions is incomplete. T...
AbstractRNA-protein interactions are essential to a wide range of biological processes. In this pape...
AbstractA 2200-ps molecular dynamics (MD) simulation of the U2 snRNA hairpin IV/U2B″ complex was per...
AbstractBackground: Human U1A protein binds to hairpin II of U1 small nuclear RNA (snRNA) and, toget...
AbstractThe structure of a complex between the RNA-binding domain of the small nuclear ribonucleopro...
AbstractBackground: Human U1A protein binds to hairpin II of U1 small nuclear RNA (snRNA) and, toget...
A detailed computational analysis of 32 protein-RNA complexes is presented. A number of physical and...
The protein U1A is a component of the U1 snRNP, a subunit of the spliceosome, which splices most euk...
With both catalytic and genetic functions, ribonucleic acid (RNA) is perhaps the most pluripotent ch...
Many critical processes in the cell involve direct binding between RNAs and proteins, making it impe...
Many critical processes in the cell involve direct binding between RNAs and proteins, making it impe...
A detailed computational analysis of 32 protein¿RNA complexes is presented. A number of physical and...
RNA molecules are now known to be involved in the processing of genetic information at all levels, t...
With both catalytic and genetic functions, ribonucleic acid (RNA) is perhaps the most pluripotent ch...
We use molecular dynamics simulations to compare the conformational structure and dynamics of a 21-b...
Despite their importance, our understanding of noncovalent RNA–protein interactions is incomplete. T...