Solution structure of an informationally complex high-affinity RNA aptamer to GTP
about
Selection and Biosensor Application of Aptamers for Small MoleculesAptamers Selected for Higher-Affinity Binding Are Not More Specific for the Target LigandSingle-molecule imaging of an in vitro-evolved RNA aptamer reveals homogeneous ligand binding kineticsComputational discovery of folded RNA domains in genomes and in vitro selected librariesComputational approaches toward the design of pools for the in vitro selection of complex aptamers.Selecting RNA aptamers for synthetic biology: investigating magnesium dependence and predicting binding affinityStructural features of metabolite-sensing riboswitches.A naturally occurring, noncanonical GTP aptamer made of simple tandem repeats.Convergent donor and acceptor substrate utilization among kinase ribozymesAmplification of RNA by an RNA polymerase ribozyme.A computational proposal for designing structured RNA pools for in vitro selection of RNAsStructural studies of the purine and SAM binding riboswitches.Comprehensive experimental fitness landscape and evolutionary network for small RNA.Ribozymes and riboswitches: modulation of RNA function by small molecules.Characterisation of aptamers for therapeutic studies.An intermolecular G-quadruplex as the basis for GTP recognition in the class V-GTP aptamer.NMR resonance assignments for the class II GTP binding RNA aptamer in complex with GTP.Optimization of Experimental Parameters to Explore Small-Ligand/Aptamer Interactions through Use of (1) H NMR Spectroscopy and Molecular Modeling.Convergent evolution of adenosine aptamers spanning bacterial, human, and random sequences revealed by structure-based bioinformatics and genomic SELEX.Prebiotically plausible mechanisms increase compositional diversity of nucleic acid sequences.A Stably Protonated Adenine Nucleotide with a Highly Shifted pKa Value Stabilizes the Tertiary Structure of a GTP-Binding RNA Aptamer.In situ simultaneous monitoring of ATP and GTP using a graphene oxide nanosheet-based sensing platform in living cells.Phosphate-group recognition by the aptamer domain of the thiamine pyrophosphate sensing riboswitch.
P2860
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P2860
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
description
2006 nî lūn-bûn
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2006 թուականի Փետրուարին հրատարակուած գիտական յօդուած
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2006 թվականի փետրվարին հրատարակված գիտական հոդված
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2006年の論文
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2006年学术文章
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2006年学术文章
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2006年学术文章
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name
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@ast
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@en
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@nl
type
label
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@ast
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@en
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@nl
prefLabel
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@ast
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@en
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@nl
P2860
P50
P356
P1433
P1476
Solution structure of an informationally complex high-affinity RNA aptamer to GTP
@en
P2093
Jonathan H Davis
P2860
P304
P356
10.1261/RNA.2251306
P407
P577
2006-02-28T00:00:00Z