Nucleoside conformations VIII. Conformation of guanosine 2′-phosphate in aqueous solution by proton magnetic resonance spectroscopy (original) (raw)

Nucleoside conformationsXIV. Conformation of adenosine monophosphates in aqueous solution by proton magnetic resonance spectroscopy

trang son

Biochimica Et Biophysica Acta (bba) - Nucleic Acids and Protein Synthesis, 1974

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The relationship between proton-proton NMR coupling constants and substituent electronegativities. II—conformational analysis of the sugar ring in nucleosides and nucleotides in solution using a generalized Karplus equation

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Magn Reson Chem, 1981

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Proton NMR and spin lattice relaxation study of nucleoside di- and triphosphates in neutral aqueous solutions

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Biochimica Et Biophysica Acta-general Subjects, 1977

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15 N and 13 C nuclear magnetic resonance of deoxydinucleotide monophosphates. I. Protonation of deoxycytidylyl-(3′,5′)-guanosine in dimethylsulfoxide

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Canadian Journal of Chemistry, 1988

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Purine Nucleosides and Nucleotides Unequivocally in the Syn Conformation: Guanosine and 5′-GM P with 8-tert-Butyl and 8-( α-Hydroxyisopropyl) Substituents

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Self-structured guanosine 5'-monophosphate. A carbon-13 and proton magnetic resonance study

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Biochimica Et Biophysica Acta (bba) - Nucleic Acids and Protein Synthesis, 1974

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Nuclear-Magnetic-Resonance Studies of 5'-Ribonucleotide and 5'-Deoxyribonucleotide Conformations in Solution Using the Lanthanide Probe Method

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European Journal of Biochemistry, 1978

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Conformational analysis of the dinucleotides 5'-methylphospho-N6-dimethyladenylyl-uridine (mpm62A-U) and 5'methylphospho-uridylyl-N6-dimethyladenosine (mpU-m62A) and of the trinucleotide U-m62A-U. A nuclear magnetic resonance and circular dichroic study

Pieter Gijsman

European journal of biochemistry / FEBS, 1988

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Guanosine 5'-Diphosphate, 3'-Diphosphate: Assignment of Structure by 13C Nuclear Magnetic Resonance Spectroscopy

Lawrence Que

Proceedings of the National Academy of Sciences, 1973

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Ground-State Properties of Nucleic Acid Constituents Studied by Density Functional Calculations. 3. Role of Sugar Puckering and Base Orientation on the Energetics and Geometry of 2‘-Deoxyribonucleosides and Ribonucleosides

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Quantum chemical studies on the conformational structure of nucleic acids I. Extended Hückel calculations on d-ribose phosphate

Praveen Yadav

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Biochimica et Biophysica Acta (BBA) - Nucleic Acids and Protein Synthesis, 1974

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The Transmission of the Electronic Character of Guanin-9-yl Drives the Sugar-Phosphate Backbone Torsions in Guanosine 3′,5′-Bisphosphate

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Angewandte Chemie International Edition, 1999

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Different nucleobase orientations in two cyclic 2',3'-phosphates of purine ribonucleosides: Et(3)NH(2',3'-cAMP) and Et(3)NH(2',3'-cGMP)xH(2)O

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Computer modeling studies of ribonuclease T1-guanosine monophosphate complexes

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Comparison of theoretical and experimental approaches to determination of conformation of nucleosides about the glycosidic bond

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NMR Studies on the syn-anti Dynamic Equilibrium in Purine Nucleosides and Nucleotides

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Ects Other Conformational Preferences of Modi Fi Ed Guanine Nucleosides

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Geometrical and Electronic Structure Variability of the Sugar− phosphate Backbone in Nucleic Acids

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Conformation and interaction of short nucleic acid double-stranded helices. II. Proton magnetic resonance studies on the hydrogen-bonded NH-N protons of ribosyl ApApGpCpUpU helix

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