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On the ionization constant of 5-ribosyluracil.
Biochemistry. 1965 Dec;4(12):2832-5
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1H-15N NMR studies of Escherichia coli tRNA(Phe) from hisT mutants: a structural role for pseudouridine.
Biochemistry. 1991 Apr 30;30(17):4223-31
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Properties of a U1/mRNA 5' splice site duplex containing pseudouridine as measured by thermodynamic and NMR methods.
Biochemistry. 1991 Feb 19;30(7):1795-801
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Structural basis of anticodon loop recognition by glutaminyl-tRNA synthetase.
Nature. 1991 Jul 18;352(6332):213-8
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RNA recognition by Tat-derived peptides: interaction in the major groove?
Cell. 1991 Aug 9;66(3):577-88
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Analysis of arginine-rich peptides from the HIV Tat protein reveals unusual features of RNA-protein recognition.
Genes Dev. 1991 Feb;5(2):201-10
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Chemical synthesis of biologically active oligoribonucleotides using beta-cyanoethyl protected ribonucleoside phosphoramidites.
Nucleic Acids Res. 1990 Sep 25;18(18):5433-41
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Solid-phase synthesis and high-resolution NMR studies of two synthetic double-helical RNA dodecamers: r(CGCGAAUUCGCG) and r(CGCGUAUACGCG).
Biochemistry. 1989 Mar 21;28(6):2422-35
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Effects of base sequence on the loop folding in DNA hairpins.
Biochemistry. 1989 Sep 5;28(18):7491-8
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Characterization of base-pair opening in deoxynucleotide duplexes using catalyzed exchange of the imino proton.
J Mol Biol. 1988 Mar 20;200(2):223-38
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15N-labeled Escherichia coli tRNAfMet, tRNAGlu, tRNATyr, and tRNAPhe. Double resonance and two-dimensional NMR of N1-labeled pseudouridine.
J Biol Chem. 1985 Aug 15;260(17):9734-41
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Nuclear magnetic resonance studies of polyamine binding to a defined DNA sequence.
J Mol Biol. 1985 Sep 20;185(2):457-9
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Influence of the polyamines spermine and spermidine on yeast tRNAPhe as revealed from its imino proton NMR spectrum.
Nucleic Acids Res. 1986 Jan 24;14(2):983-98
PMID: 3511448
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A single mode of DNA base-pair opening drives imino proton exchange.
Nature. 1987 Jul 2-8;328(6125):89-92
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A U1 snRNA:pre-mRNA base pairing interaction is required early in yeast spliceosome assembly but does not uniquely define the 5' cleavage site.
EMBO J. 1988 Aug;7(8):2533-8
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5' splice site selection in yeast: genetic alterations in base-pairing with U1 reveal additional requirements.
Genes Dev. 1988 Oct;2(10):1258-67
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Compilation of tRNA sequences and sequences of tRNA genes.
Nucleic Acids Res. 1989;17 Suppl:r1-172
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Compilation of small nuclear RNA sequences.
Methods Enzymol. 1989;180:521-32
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Base only binding of spermine in the deep groove of the A-DNA octamer d(GTGTACAC).
Biochemistry. 1989 Mar 21;28(6):2360-4
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Nitrogen-15-labeled yeast tRNAPhe: double and two-dimensional heteronuclear NMR of guanosine and uracil ring NH groups.
Biochemistry. 1984 Sep 11;23(19):4395-400
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Structure, kinetics and thermodynamics of DNA hairpin fragments in solution.
J Biomol Struct Dyn. 1983 Oct;1(1):115-29
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A compensatory base change in U1 snRNA suppresses a 5' splice site mutation.
Cell. 1986 Sep 12;46(6):827-35
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Conformation of an RNA pseudoknot.
J Mol Biol. 1990 Jul 20;214(2):437-53
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Structural studies of protein-nucleic acid interaction: the sources of sequence-specific binding.
Q Rev Biophys. 1990 Aug;23(3):205-80
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The solution structure of a RNA pentadecamer comprising the anticodon loop and stem of yeast tRNAPhe. A 500 MHz 1H-n.m.r. study.
Biochem J. 1984 Aug 1;221(3):737-51
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Nuclear magnetic resonance studies on yeast tRNAPhe. III. Assignments of the iminoproton resonances of the tertiary structure by means of nuclear Overhauser effect experiments at 500 MHz.
Nucleic Acids Res. 1983 Jul 11;11(13):4501-20
PMID: 6346269
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Proton exchange rates in transfer RNA as a function of spermidine and magnesium.
Nucleic Acids Res. 1983 Apr 11;11(7):2121-34
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Hydrogen exchange and structural dynamics of proteins and nucleic acids.
Q Rev Biophys. 1983 Nov;16(4):521-655
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Equilibrium dialysis studies of polyamine binding to DNA.
Biopolymers. 1982 Jul;21(7):1301-14
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Structure of a B-DNA dodecamer. III. Geometry of hydration.
J Mol Biol. 1981 Sep 25;151(3):535-56
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The molecular electrostatic potential and steric accessibility of A-DNA.
Nucleic Acids Res. 1981 Sep 25;9(18):4677-88
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Sequence-specific recognition of double helical nucleic acids by proteins.
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