Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
about
Covalent ligation studies on the human telomere quadruplex.Synthesis and monitored selection of nucleotide surrogates for binding T:A base pairs in homopurine-homopyrimidine DNA triple helices.Efficient bacterial transcription of DNA nanocircle vectors with optimized single-stranded promoters.Padlock oligonucleotides for duplex DNA based on sequence-specific triple helix formation.Multitasking by multivalent circular DNA aptamers.The virtues of self-binding: high sequence specificity for RNA cleavage by self-processed hammerhead ribozymes.Rolling-circle amplification in DNA diagnostics: the power of simplicity.Syntheses and structural studies of calix[4]arene-nucleoside and calix[4]arene-oligonucleotide hybrids.Snap-to-it probes: chelate-constrained nucleobase oligomers with enhanced binding specificity.Synthesis of unimolecularly circular G-quadruplexes as prospective molecular probes.New approaches toward recognition of nucleic acid triple helicesProbing secondary interactions in biomolecular recognition by dynamic combinatorial chemistry.The Discovery of Rolling Circle Amplification and Rolling Circle Transcription.Three-pronged probes: high-affinity DNA binding with cap, β-alanines and oligopyrrolamides.Radical polymerization by a supramolecular catalyst: cyclodextrin with a RAFT reagent.Pseudorotaxane formation via the slippage process with chemically cyclized oligonucleotides.Structure and stability of a dimeric g-quadruplex formed by cyclic oligonucleotides.Synthesis and characterization of small circular double-stranded RNAs.Novel macrocycles derived from nucleosides.Modified oligonucleotides containing lithocholic acid in their backbones: their enhanced cellular uptake and their mimicking of hairpin structures.Oligonucleotide cyclization: the thiol-maleimide reaction revisited.Functioning via host–guest interactionsStimuli-responsive polymeric materials functioning via host–guest interactionsCircular RNAs as Therapeutic Agents and TargetsStructural optimization of pseudorotaxane-forming oligonucleotides for efficient and stable complex formation
P2860
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P2860
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on August 1998
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
@da
vědecký článek
@cs
name
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@en
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@nl
type
label
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@en
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@nl
prefLabel
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@en
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@nl
P2860
P356
P1476
Recognition of DNA, RNA, and Proteins by Circular Oligonucleotides.
@en
P2093
Eric T Kool
P2860
P304
P356
10.1021/AR9602462
P407
P577
1998-08-01T00:00:00Z