Determination of heteronuclear long-range couplings to heteronuclei in natural abundance by two- and three-dimensional NMR spectroscopy
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[1] D. Neuhaus. Nuclear Overhauser Effect , 2011 .
[2] H. Scheraga,et al. Conformational properties of trans Ac-Asn-Pro-Tyr-NHMe and trans Ac-Tyr-Pro-Asn-NHMe in dimethylsulfoxide and in water determined by multinuclear n.m.r. spectroscopy. , 2009, International journal of peptide and protein research.
[3] P. Schmieder,et al. Conformational Analysis of the cis‐ and trans‐Isomers of FK506 by NMR and Molecular Dynamics , 1991 .
[4] P. Schmieder,et al. A new 1H15N13C triple-resonance experiment for sequential assignments and measuring homonuclear HαHN vicinal coupling constants in polypeptides , 1991 .
[5] P. Schmieder,et al. Increased resolution in proton detected heteronuclear NMR experiments by folding in the hetero‐dimension , 1991 .
[6] W. M. Westler,et al. Elucidation of amino acid spin systems in proteins and determination of heteronuclear coupling constants by carbon-proton-proton three-dimensional NMR☆ , 1991 .
[7] G. Martin,et al. Selective inverse multiple bond analysis. A simple 1D experiment for the measurement of long-range heteronuclear coupling constants , 1991 .
[8] S. Schreiber,et al. Chemistry and biology of the immunophilins and their immunosuppressive ligands. , 1991, Science.
[9] H. Kessler,et al. Solution structure of FK506 from nuclear magnetic resonance and molecular dynamics , 1990 .
[10] S. Berger,et al. SELRESOLV—inverse and selective detection of long‐range C,H spin coupling constants , 1990 .
[11] P. Schmieder,et al. 3D Heteronuclear NMR techniques for carbon-13 in natural abundance , 1990 .
[12] J. Keeler,et al. Measurement of homonuclear coupling constants from NMR correlation spectra , 1990 .
[13] A M Gronenborn,et al. Four-dimensional heteronuclear triple-resonance NMR spectroscopy of interleukin-1 beta in solution. , 1990, Science.
[14] P. Schmieder,et al. Improved Resolution in Proton-Detected Heteronuclear Long-Range Correlation , 1990 .
[15] S. Fesik,et al. Heteronuclear three-dimensional NMR spectroscopy of isotopically labelled biological macromolecules , 1990, Quarterly Reviews of Biophysics.
[16] P. Schmieder,et al. Fast Heteronuclear 3D NMR Spectroscopy , 1990 .
[17] R. Boelens,et al. Structural studies by 1H/13C two-dimensional and three-dimensional HMQC-NOE at natural abundance on complex carbohydrates , 1990 .
[18] G. Montelione,et al. Conformation-independent sequential NMR connections in isotope-enriched polypeptides by 1H13C15N triple-resonance experiments , 1990 .
[19] A M Gronenborn,et al. 1H‐Nmr stereospecific assignments by conformational data‐base searches , 1990, Biopolymers.
[20] Ad Bax,et al. Rapid recording of 2D NMR spectra without phase cycling. Application to the study of hydrogen exchange in proteins , 1989 .
[21] G. Wider,et al. A heteronuclear three-dimensional NMR experiment for measurements of small heteronuclear coupling constants in biological macromolecules , 1989 .
[22] James Keeler,et al. Measurement of long-range heteronuclear coupling constants , 1989 .
[23] D. Uhrín,et al. Determination of long-range proton-carbon coupling constants using modified 2D J-resolved experiments , 1989 .
[24] J. Casida,et al. Phase-sensitive partially coupled correlation sequence for long-range J measurement , 1989 .
[25] C. Griesinger,et al. Proton-detected C,H correlation via long-range couplings with soft pulses; determination of coupling constants , 1989 .
[26] Werner Braun,et al. Automated stereospecific 1H NMR assignments and their impact on the precision of protein structure determinations in solution , 1989 .
[27] David Neuhaus,et al. The Nuclear Overhauser Effect in Structural and Conformational Analysis , 1989 .
[28] G. Montelione,et al. Accurate measurements of long-range heteronuclear coupling constants from homonuclear 2D NMR spectra of isotope-enriched proteins , 1989 .
[29] A. Waterhouse. Conformational analysis via vicinal carbon–hydrogen coupling , 1989 .
[30] P L Weber,et al. Determining stereo-specific 1H nuclear magnetic resonance assignments from distance geometry calculations. , 1988, Journal of molecular biology.
[31] W. V. van Gunsteren,et al. Protein structures from NMR. , 1988, Biochemistry.
[32] N. Andersen,et al. Direct observation of long-range heteronuclear splittings in proton 2D J spectra , 1988 .
[33] H. Kessler,et al. Determination of heteronuclear long-range coupling constants by soft-H,C-COSY , 1988 .
[34] J. Keeler,et al. A convenient technique for the measurement and assignment of long-range carbon-13 proton coupling constants , 1988 .
[35] A. J. Shaka,et al. Iterative schemes for bilinear operators; application to spin decoupling , 1988 .
[36] J. Keeler,et al. Improvement of carbon-13 satellite spectra by double difference spectroscopy , 1988 .
[37] Horst Kessler,et al. Two‐Dimensional NMR Spectroscopy: Background and Overview of the Experiments [New Analytical Methods (36)] , 1988 .
[38] K. Wüthrich. NMR of proteins and nucleic acids , 1988 .
[39] R. R. Ernst,et al. Practical aspects of the E.COSY technique. Measurement of scalar spin-spin coupling constants in peptides , 1987 .
[40] C. Griesinger,et al. Peptide conformations. 42. Conformation of side chains in peptides using heteronuclear coupling constants obtained by two-dimensional NMR spectroscopy , 1987 .
[41] M. Rance. Improved techniques for homonuclear rotating-frame and isotropic mixing experiments , 1987 .
[42] M. Okuhara,et al. FK-506, a novel immunosuppressant isolated from a Streptomyces. I. Fermentation, isolation, and physico-chemical and biological characteristics. , 1987, The Journal of antibiotics.
[43] Timothy F. Havel,et al. Protein structures in solution by nuclear magnetic resonance and distance geometry. The polypeptide fold of the basic pancreatic trypsin inhibitor determined using two different algorithms, DISGEO and DISMAN. , 1987, Journal of molecular biology.
[44] Masashi Hashimoto,et al. Structure of FK506, a novel immunosuppressant isolated from Streptomyces , 1987 .
[45] R. R. Ernst,et al. Correlation of connected transitions by two‐dimensional NMR spectroscopy , 1986 .
[46] K. Wüthrich,et al. Editing of 2D 1H NMR spectra using X half-filters. combined use with residue-selective 15N labeling of proteins , 1986 .
[47] A. Bax,et al. 1H and13C Assignments from Sensitivity-Enhanced Detection of Heteronuclear Multiple-Bond Connectivity by 2D Multiple Quantum NMR , 1986 .
[48] A. Bax,et al. Sensitivity-enhanced two-dimensional heteronuclear shift correlation NMR spectroscopy , 1986 .
[49] A. Bax,et al. Proton and carbon-13 assignments from sensitivity-enhanced detection of heteronuclear multiple-bond connectivity by 2D multiple quantum NMR , 1986 .
[50] O. Kamo,et al. Determination of long-range proton-carbon 13 coupling constants with selective two-dimensional INEPT , 1986 .
[51] Ad Bax,et al. MLEV-17-based two-dimensional homonuclear magnetization transfer spectroscopy , 1985 .
[52] R. R. Ernst,et al. Two-dimensional correlation of connected NMR transitions , 1985 .
[53] H. Kessler,et al. Differences and sums of traces within, COSY spectra (DISCO) for the extraction of coupling constants: ‘Decoupling’ after the measurement , 1985 .
[54] R. Kaptein,et al. Stereospecific assignments of 1H‐nmr methyl lines and conformation of valyl residues in the lac repressor headpiece , 1985 .
[55] K. Wüthrich,et al. 113CD-1H spin-spin couplings in homonuclear 1H correlated spectroscopy of metallothionein. Identification of the cysteine 1H spin systems. , 1984, European journal of biochemistry.
[56] R. Freeman,et al. An excitation sequence which discriminates between direct and long-range CH coupling , 1984 .
[57] D. Cowburn,et al. Side chain conformations of oxytocin and vasopressin studied by NMR observation of isotopic isomers , 1984 .
[58] R. Griffey,et al. Correlation of proton and nitrogen-15 chemical shifts by multiple quantum NMR☆ , 1983 .
[59] K Wüthrich,et al. Pseudo-structures for the 20 common amino acids for use in studies of protein conformations by measurements of intramolecular proton-proton distance constraints with nuclear magnetic resonance. , 1983, Journal of molecular biology.
[60] Richard R. Ernst,et al. Coherence transfer by isotropic mixing: Application to proton correlation spectroscopy , 1983 .
[61] K. Wüthrich,et al. Application of phase sensitive two-dimensional correlated spectroscopy (COSY) for measurements of 1H-1H spin-spin coupling constants in proteins. , 1983, Biochemical and biophysical research communications.
[62] A. Bax. Determination of heteronuclear coupling constants via semiselective two-dimensional J spectroscopy , 1983 .
[63] D. Doddrell,et al. Pulse sequences utilizing the correlated motion of coupled heteronuclei in the transverse plane of the doubly rotating frame , 1983 .
[64] A. Pines,et al. Bilinear rotation decoupling of homonuclear scalar interactions , 1982 .
[65] A. Bax,et al. Long-range proton-carbon-13 NMR spin coupling constants , 1982 .
[66] D. Cowburn,et al. TORSION ANGLES IN THE CYSTINE BRIDGE OF OXYTOCIN IN AQUEOUS SOLUTION. MEASUREMENTS OF CIRCUMJACENT VICINAL COUPLINGS BETWEEN PROTON, CARBON-13, AND NITROGEN-15 , 1980 .
[67] L. Mueller. Sensitivity enhanced detection of weak nuclei using heteronuclear multiple quantum coherence , 1979 .
[68] M. Llinás,et al. 1H‐15N Spin–spin couplings in alumichrome , 1978 .
[69] V. T. Ivanov,et al. Refinement of the solution conformation of valinomycin with the acid coupling constants from the 13C-nuclear-magnetic-resonance spectra. , 1977, European journal of biochemistry.
[70] M. Bodanszky,et al. THE AZIDE METHOD IN PEPTIDE SYNTHESIS, ITS SCOPE AND LIMITATIONS , 1974 .
[71] Sogn Ja,et al. Study of nitrogen-15-labeled amino acids and peptides by nuclear magnetic resonance spectroscopy. , 1973 .
[72] J. Roberts,et al. Nitrogen-15 magnetic resonance spectroscopy. X. Angular dependence of vicinal 15N-H coupling constants in amino acids. , 1970, The Journal of organic chemistry.
[73] K. Pachler. Nuclear magnetic resonance study of some α-amino acids—II. Rotational isomerism , 1964 .
[74] K. Pachler. Nuclear magnetic resonance study of some α-amino acids—I: Coupling constants in alkaline and acidic medium , 1963 .
[75] Martin Karplus,et al. Vicinal Proton Coupling in Nuclear Magnetic Resonance , 1963 .
[76] J. Prestegard,et al. Refinement of the NMR structures for acyl carrier protein with scalar coupling data , 1990, Proteins.
[77] G. Montelione,et al. Accurate measurements of homonuclear HN-H.alpha. coupling constants in polypeptides using heteronuclear 2D NMR experiments , 1989 .
[78] S. Fesik,et al. Heteronuclear three-dimensional NMR spectroscopy. Natural abundance carbon-13 chemical shift editing of 1H-1H COSY spectra , 1989 .
[79] D. Uhrín,et al. Determination and assignment of heteronuclear long-range coupling constants. Methods based on semiselective INEPT , 1989 .
[80] G. Marshall. Computer-aided drug design. , 1987, Annual review of pharmacology and toxicology.
[81] G. Bodenhausen,et al. Principles of nuclear magnetic resonance in one and two dimensions , 1987 .
[82] H. Kessler,et al. Peptide conformations, 23 NMR investigation of cyclic hexapeptides containing the active sequence of somatostatin☆ , 1982 .
[83] H. Kessler,et al. Peptide conformation, 24 homo- and heteronuclear 2D NMR spectroscopy of cyclic pentapeptides containing the active sequenceof somatostatin , 1982 .
[84] V. Bystrov. Spin—spin coupling and the conformational states of peptide systems , 1976 .
[85] M. Karplus. Contact Electron‐Spin Coupling of Nuclear Magnetic Moments , 1959 .