Search Results - "Darzynkiewicz, E"
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Phosphorothioate cap analogs increase stability and translational efficiency of RNA vaccines in immature dendritic cells and induce superior immune responses in vivo
Published in Gene therapy (01-08-2010)“…Vaccination with in vitro transcribed RNA coding for tumor antigens is considered a promising approach for cancer immunotherapy and has already entered human…”
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Weak binding affinity of human 4EHP for mRNA cap analogs
Published in RNA (Cambridge) (01-05-2007)“…Ribosome recruitment to the majority of eukaryotic mRNAs is facilitated by the interaction of the cap binding protein, eIF4E, with the mRNA 5' cap structure…”
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Stopped-flow and Brownian dynamics studies of electrostatic effects in the kinetics of binding of 7-methyl-GpppG to the protein eIF4E
Published in European biophysics journal (01-01-2000)“…The kinetics of binding 7-methyl-GpppG, an analogue of the 5'-mRNA cap, to the cap-binding protein eIF4E, at 20 degrees C, in 50 mM Hepes-KOH buffer, pH 7.2,…”
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Effects of pH on kinetics of binding of mRNA-cap analogs by translation initiation factor eIF4E
Published in European biophysics journal (01-02-2003)“…Stopped-flow spectrofluorimetry and a theoretical method for predicting protonation equilibria in polyelectrolytes were combined in an analysis of the pH…”
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Kinetics of C. Elegans DcpS Cap Hydrolysis Studied by Fluorescence Spectroscopy
Published in Nucleosides, nucleotides & nucleic acids (01-01-2007)“…DcpS (scavenger decapping enzyme) from nematode C. elegans readily hydrolyzes both monomethyl- and trimethylguanosine cap analogues. The reaction was followed…”
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Synthesis and properties of mRNAs containing the novel “anti-reverse” cap analogs 7-methyl(3′-O-methyl)GpppG and 7-methyl(3′-deoxy)GpppG
Published in RNA (Cambridge) (01-10-2001)“…The ability to synthesize capped RNA transcripts in vitro using bacteriophage polymerases has been of considerable value in a variety of applications. However,…”
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Purine nucleoside phosphorylase. Structure-activity relationships for substrate and inhibitor properties of N-1-, N-7-, and C-8-substituted analogues; differentiation of mammalian and bacterial enzymes with N-1-methylinosine and guanosine
Published in The Journal of biological chemistry (05-07-1988)“…The previous finding that 7-methylinosine (m7Ino) and 7-methylguanosine (m7Guo) are excellent, as well as fluorescent, substrates for calf spleen purine…”
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Molecular recognition of mRNA 5′ cap by 3′ poly(A)-specific ribonuclease (PARN) differs from interactions known for other cap-binding proteins
Published in Biochimica et biophysica acta (01-04-2016)“…The mRNA 5′ cap structure plays a pivotal role in coordination of eukaryotic translation and mRNA degradation. Poly(A)-specific ribonuclease (PARN) is a…”
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Novel "anti-reverse" cap analogs with superior translational properties
Published in RNA (Cambridge) (01-09-2003)“…Synthetic analogs of the 5'-terminal caps of eukaryotic mRNAs and snRNAs are used in elucidating such physiological processes as mRNA translation, pre-mRNA…”
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Biophysical Studies of eIF4E Cap-binding Protein: Recognition of mRNA 5′ Cap Structure and Synthetic Fragments of eIF4G and 4E-BP1 Proteins
Published in Journal of molecular biology (07-06-2002)“…mRNA 5′-cap recognition by the eukaryotic translation initiation factor eIF4E has been exhaustively characterized with the aid of a novel fluorometric,…”
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11
mRNAs containing the histone 3' stem-loop are degraded primarily by decapping mediated by oligouridylation of the 3' end
Published in RNA (Cambridge) (01-01-2013)“…Metazoan replication-dependent histone mRNAs are only present in S-phase, due partly to changes in their stability. These mRNAs end in a unique stem-loop (SL)…”
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Differential Inhibition of mRNA Degradation Pathways by Novel Cap Analogs
Published in The Journal of biological chemistry (27-01-2006)“…mRNA degradation predominantly proceeds through two alternative routes: the 5′→3′ pathway, which requires deadenylation followed by decapping and 5′→3′…”
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Synthesis and evaluation of stability of m3G-CAP analogues in serum-supplemented medium and cytosolic extract
Published in Bioorganic & medicinal chemistry (15-12-2013)“…Increased efficiency in splice-correction (splice-switching) has been shown by use of a synthetic RNA 5′-end nuclear localization signal composed of an…”
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Novel cap analogs for in vitro synthesis of mRNAs with high translational efficiency
Published in RNA (Cambridge) (01-09-2004)“…Synthetic analogs of the N7-methylated guanosine triphosphate cap at the 5' end of eukaryotic mRNAs and snRNAs have played an important role in understanding…”
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Thermodynamics of mRNA 5‘ Cap Binding by Eukaryotic Translation Initiation Factor eIF4E
Published in Biochemistry (Easton) (26-10-2004)“…Translation of mRNA in eukaryotes begins with specific recognition of the 5‘ cap structure by the highly conserved protein, eIF4E. The thermodynamics of eIF4E…”
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Influence of Electric Charge Variation at Residues 209 and 159 on the Interaction of eIF4E with the mRNA 5‘ Terminus
Published in Biochemistry (Easton) (11-05-2004)“…Eukaryotic translation initiation factor 4E (eIF4E) is essential for efficient protein synthesis in cap-dependent translation. The protein specifically binds…”
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Specificity of recognition of mRNA 5' cap by human nuclear cap-binding complex
Published in RNA (Cambridge) (01-09-2005)“…The heterodimeric nuclear cap-binding complex (CBC) binds to the mono-methylated 5' cap of eukaryotic RNA polymerase II transcripts such as mRNA and U snRNA…”
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A direct method for the synthesis of nucleoside 5′-methylenebis(phosphonate)s from nucleosides
Published in Tetrahedron letters (04-04-2005)“…[Display omitted] An efficient method for the preparation of nucleoside 5′-methylenebis(phosphonate)s has been developed. Unprotected nucleosides are…”
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Enzymatically stable 5′ mRNA cap analogs: Synthesis and binding studies with human DcpS decapping enzyme
Published in Bioorganic & medicinal chemistry (01-05-2006)“…Four novel 5′ mRNA cap analogs have been synthesized with one of the pyrophosphate bridge oxygen atoms of the triphosphate linkage replaced with a methylene…”
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