AbstractBackground: The structure of P4-P6, a 160 nucleotide domain of the self-splicing Tetrahymena thermophila intron, was solved previously. Mutants of the P4-P6 RNA that form a more stable tertiary structure in solution were recently isolated by successive rounds of in vitro selection and amplification.Results: We show that a single-site mutant (ΔC209) possessing greater tertiary stability than wild-type P4-P6 also crystallizes much more rapidly and under a wider variety of conditions. The crystal structure provides a satisfying explanation for the increased stability of the mutant; the deletion of C209 allows the adjacent bulged adenine to enter the P4 helix and form an A-G base pair, presumably attenuating the conformational flexibili...
SummaryWe have solved the crystal structure of an all-RNA hammerhead ribozyme having a single 2′-O-m...
grantor: University of TorontoThe discovery of catalytic RNAs, or ribozymes, indicated tha...
grantor: University of Toronto'Neurospora' VS RNA is a small catalytic RNA capable of medi...
AbstractBackground: The structure of P4-P6, a 160 nucleotide domain of the self-splicing Tetrahymena...
Crystallography is a major technique for determining large RNA structures. Obtaining diffraction-qua...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
The three-dimensional structures of RNA enzymes form catalytic centers that include specific substra...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
The vast conformational space of functional RNAs begs the question of how they achieve structural sp...
grantor: University of TorontoNeurospora VS RNA is a naturally occurring catalytic RNA mol...
Crystallographic studies of the ribosome have provided molecular details of protein synthesis. Howev...
AbstractBackground Group I self-splicing introns catalyze sequential transesterification reactions w...
There are a wide variety of non-coding RNAs that fold into well-defined 3D shapes and play important...
The catalytic core of Group I self-splicing introns has been proposed to consist of two structural d...
AbstractThis is the first high resolution crystal structure of an RNA molecule made by solid phase c...
SummaryWe have solved the crystal structure of an all-RNA hammerhead ribozyme having a single 2′-O-m...
grantor: University of TorontoThe discovery of catalytic RNAs, or ribozymes, indicated tha...
grantor: University of Toronto'Neurospora' VS RNA is a small catalytic RNA capable of medi...
AbstractBackground: The structure of P4-P6, a 160 nucleotide domain of the self-splicing Tetrahymena...
Crystallography is a major technique for determining large RNA structures. Obtaining diffraction-qua...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
The three-dimensional structures of RNA enzymes form catalytic centers that include specific substra...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
The vast conformational space of functional RNAs begs the question of how they achieve structural sp...
grantor: University of TorontoNeurospora VS RNA is a naturally occurring catalytic RNA mol...
Crystallographic studies of the ribosome have provided molecular details of protein synthesis. Howev...
AbstractBackground Group I self-splicing introns catalyze sequential transesterification reactions w...
There are a wide variety of non-coding RNAs that fold into well-defined 3D shapes and play important...
The catalytic core of Group I self-splicing introns has been proposed to consist of two structural d...
AbstractThis is the first high resolution crystal structure of an RNA molecule made by solid phase c...
SummaryWe have solved the crystal structure of an all-RNA hammerhead ribozyme having a single 2′-O-m...
grantor: University of TorontoThe discovery of catalytic RNAs, or ribozymes, indicated tha...
grantor: University of Toronto'Neurospora' VS RNA is a small catalytic RNA capable of medi...