AbstractBackground: The 2′-hydroxyl of U preceding the cleavage site, U(−1), in the Tetrahymena ribozyme reaction contributes 103-fold to catalysis relative to a 2′-hydrogen atom. Previously proposed models for the catalytic role of this 2′-OH involve coordination of a catalytic metal ion and hydrogen-bond donation to the 3′-bridging oxygen. An additional model, hydrogen-bond donation by the 2′-OH to a nonbridging reactive phosphoryl oxygen, is also consistent with previous results. We have tested these models using atomic-level substrate modifications and kinetic and thermodynamic analyses.Results: Replacing the 2′-OH with -NH3+ increases the reaction rate ∼60-fold, despite the absence of lone-pair electrons on the 2′-NH3+ group to coordin...
AbstractBackground: Ribozymes are biological catalysts that promote the hydrolysis and transesterifi...
The hammerhead ribozyme (HHRz) catalyzes a site-specific phosphodiester bond cleavage reaction that ...
ABSTRACT: Binding of the Tetrahymena ribozyme ’ s oligonucleotide substrate (S) involves P1 duplex f...
AbstractBackground: The 2′-hydroxyl of U preceding the cleavage site, U(−1), in the Tetrahymena ribo...
The viability of living systems depends inextricably on enzymes that catalyze phosphoryl transfer re...
<div><p>The viability of living systems depends inextricably on enzymes that catalyze phosphoryl tra...
<p>The three identified catalytic metal ions (M<sub>A</sub>, M<sub>B</sub>, and M<sub>c</sub>) and t...
<p>The ribozyme binds the oligonucleotide substrate (in two steps) and the exogenous G that serves a...
Conformational changes are often required for the biological function of RNA molecules. In the Tetra...
The presence of catalytic metal ions in RNA active sites has often been inferred from metal-ion resc...
We have used nucleotide analog interference mapping and site-specific substitution to determine the ...
The hammerhead ribozyme is a self-cleaving RNA broadly dispersed across all kingdoms of life. Althou...
AbstractDivalent metal ion-dependent hammerhead ribozymes can cleave any RNA with a NUX triplet, whe...
5 p.-4 fig.-1 tab.The hairpin ribozyme catalyzes site-specific cleavage of an RNA substrate using a ...
AbstractBackground: Hairpin ribozymes (RNA enzymes) catalyze the same chemical reaction as ribonucle...
AbstractBackground: Ribozymes are biological catalysts that promote the hydrolysis and transesterifi...
The hammerhead ribozyme (HHRz) catalyzes a site-specific phosphodiester bond cleavage reaction that ...
ABSTRACT: Binding of the Tetrahymena ribozyme ’ s oligonucleotide substrate (S) involves P1 duplex f...
AbstractBackground: The 2′-hydroxyl of U preceding the cleavage site, U(−1), in the Tetrahymena ribo...
The viability of living systems depends inextricably on enzymes that catalyze phosphoryl transfer re...
<div><p>The viability of living systems depends inextricably on enzymes that catalyze phosphoryl tra...
<p>The three identified catalytic metal ions (M<sub>A</sub>, M<sub>B</sub>, and M<sub>c</sub>) and t...
<p>The ribozyme binds the oligonucleotide substrate (in two steps) and the exogenous G that serves a...
Conformational changes are often required for the biological function of RNA molecules. In the Tetra...
The presence of catalytic metal ions in RNA active sites has often been inferred from metal-ion resc...
We have used nucleotide analog interference mapping and site-specific substitution to determine the ...
The hammerhead ribozyme is a self-cleaving RNA broadly dispersed across all kingdoms of life. Althou...
AbstractDivalent metal ion-dependent hammerhead ribozymes can cleave any RNA with a NUX triplet, whe...
5 p.-4 fig.-1 tab.The hairpin ribozyme catalyzes site-specific cleavage of an RNA substrate using a ...
AbstractBackground: Hairpin ribozymes (RNA enzymes) catalyze the same chemical reaction as ribonucle...
AbstractBackground: Ribozymes are biological catalysts that promote the hydrolysis and transesterifi...
The hammerhead ribozyme (HHRz) catalyzes a site-specific phosphodiester bond cleavage reaction that ...
ABSTRACT: Binding of the Tetrahymena ribozyme ’ s oligonucleotide substrate (S) involves P1 duplex f...