Kinking of RNA helices by bulged bases, and the structure of the human immunodeficiency virus transactivator response element.
about
Monitoring tat peptide binding to TAR RNA by solid-state 31P-19F REDOR NMRStructure of HIV-1 TAR RNA in the absence of ligands reveals a novel conformation of the trinucleotide bulgeMolecular dynamics studies of the HIV-1 TAR and its complex with argininamide.Kinking of DNA and RNA by base bulges.The bend in RNA created by the trans-activation response element bulge of human immunodeficiency virus is straightened by arginine and by Tat-derived peptideRNA helical imperfections regulate activation of the protein kinase PKR: effects of bulge position, size, and geometry.New insights into the fundamental role of topological constraints as a determinant of two-way junction conformationStraightening of bulged RNA by the double-stranded RNA-binding domain from the protein kinase PKR.Topological constraints: using RNA secondary structure to model 3D conformation, folding pathways, and dynamic adaptation.Kinking of DNA and RNA helices by bulged nucleotides observed by fluorescence resonance energy transfer.Characterizing the relative orientation and dynamics of RNA A-form helices using NMR residual dipolar couplings.Specificity of the double-stranded RNA-binding domain from the RNA-activated protein kinase PKR for double-stranded RNA: insights from thermodynamics and small-angle X-ray scattering.Molecular control of vertebrate iron homeostasis by iron regulatory proteinsAnalysis of branched nucleic acid structure using comparative gel electrophoresis.RNA dimerization promotes PKR dimerization and activation.Shortening the HIV-1 TAR RNA Bulge by a Single Nucleotide Preserves Motional Modes over a Broad Range of Time Scales.Architecture of telomerase RNA.Identification of a novel HIV-1 TAR RNA bulge binding protein.Distinct requirements for primary sequence in the 5'- and 3'-part of a bulge in the hepatitis B virus RNA encapsidation signal revealed by a combined in vivo selection/in vitro amplification system.On the use of phasing experiments to measure helical repeat and bulge loop-associated twist in RNA.Structures of bulged three-way DNA junctions.Ribosomal 5S RNA: tertiary structure and interactions with proteins.The kink-turn motif in RNA is dimorphic, and metal ion-dependentCharacterizing the bending and flexibility induced by bulges in DNA duplexes.
P2860
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P2860
Kinking of RNA helices by bulged bases, and the structure of the human immunodeficiency virus transactivator response element.
description
1992 nî lūn-bûn
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1992年の論文
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1992年学术文章
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1992年学术文章
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1992年学术文章
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1992年学术文章
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1992年学术文章
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1992年學術文章
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name
Kinking of RNA helices by bulg ...... ansactivator response element.
@en
Kinking of RNA helices by bulg ...... ansactivator response element.
@nl
type
label
Kinking of RNA helices by bulg ...... ansactivator response element.
@en
Kinking of RNA helices by bulg ...... ansactivator response element.
@nl
prefLabel
Kinking of RNA helices by bulg ...... ansactivator response element.
@en
Kinking of RNA helices by bulg ...... ansactivator response element.
@nl
P2093
P1476
Kinking of RNA helices by bulg ...... ansactivator response element.
@en
P2093
Bhattacharyya A
Riordan FA
P304
P356
10.1016/0022-2836(92)90947-I
P407
P577
1992-07-01T00:00:00Z