Evidence for proton transfer in the rate-limiting step of a fast-cleaving Varkud satellite ribozyme.
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On the origin of life in the zinc world: 1. Photosynthesizing, porous edifices built of hydrothermally precipitated zinc sulfide as cradles of life on EarthNMR structure of the A730 loop of the Neurospora VS ribozyme: insights into the formation of the active siteNMR Localization of Divalent Cations at the Active Site of the Neurospora VS Ribozyme Provides Insights into RNA–Metal-Ion InteractionsAn investigation of protonation sites and conformations of protonated amino acids by IRMPD spectroscopy.Do the hairpin and VS ribozymes share a common catalytic mechanism based on general acid-base catalysis? A critical assessment of available experimental data.Nucleobase-mediated general acid-base catalysis in the Varkud satellite ribozyme.Catalytic importance of a protonated adenosine in the hairpin ribozyme active siteStructure of a prereaction complex between the nerve agent sarin, its biological target acetylcholinesterase, and the antidote HI-6.Identification of catalytic metal ion ligands in ribozymes.Nucleic acid catalysis: metals, nucleobases, and other cofactors.Insights into RNA structure and dynamics from recent NMR and X-ray studies of the Neurospora Varkud satellite ribozyme.Rational engineering of the Neurospora VS ribozyme to allow substrate recognition via different kissing-loop interactions.Solvent and Temperature Probes of the Long-Range Electron-Transfer Step in Tyramine β-Monooxygenase: Demonstration of a Long-Range Proton-Coupled Electron-Transfer Mechanism.A remarkably stable kissing-loop interaction defines substrate recognition by the Neurospora Varkud Satellite ribozyme.An important role of G638 in the cis-cleavage reaction of the Neurospora VS ribozyme revealed by a novel nucleotide analog incorporation methodFormation of an active site in trans by interaction of two complete Varkud Satellite ribozymes.The ionic environment determines ribozyme cleavage rate by modulation of nucleobase pK aThe NMR structure of the II-III-VI three-way junction from the Neurospora VS ribozyme reveals a critical tertiary interaction and provides new insights into the global ribozyme structure.Helix-length compensation studies reveal the adaptability of the VS ribozyme architecture.The Small Ribozymes: Common and Diverse Features Observed through the FRET Lens.Additional roles of a peripheral loop-loop interaction in the Neurospora VS ribozyme.Mechanisms of RNA catalysis.Fluorine substituted adenosines as probes of nucleobase protonation in functional RNAs.
P2860
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P2860
Evidence for proton transfer in the rate-limiting step of a fast-cleaving Varkud satellite ribozyme.
description
2007 nî lūn-bûn
@nan
2007年の論文
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2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
2007年论文
@zh
2007年论文
@zh-cn
name
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@ast
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@en
type
label
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@ast
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@en
prefLabel
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@ast
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@en
P2860
P356
P1476
Evidence for proton transfer i ...... ing Varkud satellite ribozyme.
@en
P2093
M Duane Smith
Richard A Collins
P2860
P304
P356
10.1073/PNAS.0608864104
P407
P577
2007-03-26T00:00:00Z