Ultrafast quantitative 2D NMR: an efficient tool for the measurement of specific isotopic enrichments in complex biological mixtures.
暂无分享,去创建一个
Patrick Giraudeau | Serge Akoka | Jean-Charles Portais | Yoann Robin | Stéphane Massou | J. Portais | Yoann Robin | S. Massou | S. Akoka | Edern Cahoreau | P. Giraudeau | E. Cahoreau | Edern Cahoreau
[1] S. Akoka,et al. A new gradient-controlled method for improving the spectral width of ultrafast 2D NMR experiments. , 2010, Journal of magnetic resonance.
[2] R. Brüschweiler,et al. Covariance nuclear magnetic resonance spectroscopy. , 2004, The Journal of chemical physics.
[3] R G Shulman,et al. 13C NMR of intermediary metabolism: implications for systemic physiology. , 2001, Annual review of physiology.
[4] T. Szyperski. Biosynthetically directed fractional 13C-labeling of proteinogenic amino acids. An efficient analytical tool to investigate intermediary metabolism. , 1995, European journal of biochemistry.
[5] R. Freeman,et al. Two-dimensional Hadamard spectroscopy. , 2003, Journal of magnetic resonance.
[6] L. Frydman,et al. The effects of molecular diffusion in ultrafast two-dimensional nuclear magnetic resonance. , 2008, The Journal of chemical physics.
[7] A. J. Shaka,et al. Application of the filter diagonalization method to one- and two-dimensional NMR spectra , 1998, Journal of magnetic resonance (San Diego, Calif. 1997 : Print).
[8] S. Akoka,et al. Fast and precise quantitative analysis of metabolic mixtures by 2D 1H INADEQUATE NMR. , 2011, Journal of pharmaceutical and biomedical analysis.
[9] Patrick Giraudeau,et al. Sensitivity losses and line shape modifications due to molecular diffusion in continuous encoding ultrafast 2D NMR experiments. , 2008, Journal of magnetic resonance.
[10] Jean-Charles Portais,et al. NMR-based fluxomics: quantitative 2D NMR methods for isotopomers analysis. , 2007, Phytochemistry.
[11] S. Akoka,et al. Evaluation of ultrafast 2D NMR for quantitative analysis. , 2009, Analytical chemistry.
[12] K. Wüthrich,et al. Improved spectral resolution in cosy 1H NMR spectra of proteins via double quantum filtering. , 1983, Biochemical and biophysical research communications.
[13] S. Akoka,et al. Optimization of homonuclear 2D NMR for fast quantitative analysis: application to tropine-nortropine mixtures. , 2007, Journal of pharmaceutical and biomedical analysis.
[14] U. Holzgrabe,et al. Quantitative NMR spectroscopy--applications in drug analysis. , 2005, Journal of pharmaceutical and biomedical analysis.
[15] L. Frydman,et al. Multiple ultrafast, broadband 2D NMR spectra of hyperpolarized natural products. , 2009, Journal of the American Chemical Society.
[16] S. Akoka,et al. Adiabatic 1H decoupling scheme for very accurate intensity measurements in 13C NMR. , 2007, Journal of magnetic resonance.
[17] Lucio Frydman,et al. Single-scan NMR spectroscopy at arbitrary dimensions. , 2003, Journal of the American Chemical Society.
[18] Geoffrey Bodenhausen,et al. Experimental aspects of chirp NMR spectroscopy , 1993 .
[19] T. Szyperski. Biosynthetically Directed Fractional 13C‐labeling of Proteinogenic Amino Acids , 1995 .
[20] J. Keeler,et al. Elimination of zero-quantum interference in two-dimensional NMR spectra. , 2003, Angewandte Chemie.
[21] Reino Laatikainen,et al. Spectral analysis of 1H coupled 13C spectra of the amino acids: adaptive spectral library of amino acid 13C isotopomers and positional fractional 13C enrichments , 2008, Magnetic resonance in chemistry : MRC.
[22] D. Rolin,et al. The Metabolic Architecture of Plant Cells , 2002, The Journal of Biological Chemistry.
[23] P. Pelupessy,et al. Improving resolution in single-scan 2D spectroscopy. , 2008, Journal of magnetic resonance.
[24] T Szyperski,et al. 13C-NMR, MS and metabolic flux balancing in biotechnology research , 1998, Quarterly Reviews of Biophysics.
[25] C. Griesinger,et al. Adiabatic TOCSY for C,C and H,H J-transfer , 2000, Journal of biomolecular NMR.
[26] L. Frydman,et al. Line shape considerations in ultrafast 2D NMR. , 2004, Journal of magnetic resonance.
[27] J K Kelleher,et al. Flux estimation using isotopic tracers: common ground for metabolic physiology and metabolic engineering. , 2001, Metabolic engineering.
[28] Lucio Frydman,et al. Ultrafast 2D NMR spectroscopy using a continuous spatial encoding of the spin interactions. , 2004, Journal of magnetic resonance.
[29] Guido F Pauli,et al. Quantitative 1H NMR: development and potential of a method for natural products analysis. , 2005, Journal of natural products.
[30] Y. Shachar-Hill,et al. Revealing metabolic phenotypes in plants: inputs from NMR analysis , 2005, Biological reviews of the Cambridge Philosophical Society.
[31] W. Wiechert. 13C metabolic flux analysis. , 2001, Metabolic engineering.
[32] Jean-Charles Portais,et al. Application of 2D-TOCSY NMR to the measurement of specific(13C-enrichments in complex mixtures of 13C-labeled metabolites. , 2007, Metabolic engineering.
[33] W. M. Westler,et al. NMR Method for Measuring Carbon-13 Isotopic Enrichment of Metabolites in Complex Solutions , 2010, Analytical chemistry.
[34] R. R. Ernst,et al. Two‐dimensional spectroscopy. Application to nuclear magnetic resonance , 1976 .
[35] T. Dandekar,et al. 13C isotopologue perturbation studies of Listeria monocytogenes carbon metabolism and its modulation by the virulence regulator PrfA , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[36] Lucio Frydman,et al. Single-scan multidimensional magnetic resonance. , 2010, Progress in nuclear magnetic resonance spectroscopy.
[37] Lucio Frydman,et al. The acquisition of multidimensional NMR spectra within a single scan , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[38] S. Akoka,et al. Sources of sensitivity losses in ultrafast 2D NMR. , 2008, Journal of magnetic resonance.
[39] M. Mathlouthi,et al. Kinetic study of the mutarotation of D-glucose in concentrated aqueous solution by gas-liquid chromatography , 2001 .
[40] Philippe Pelupessy,et al. Adiabatic single scan two-dimensional NMR spectrocopy. , 2003, Journal of the American Chemical Society.
[41] Lucio Frydman,et al. Ultrafast two-dimensional nuclear magnetic resonance spectroscopy of hyperpolarized solutions , 2007 .
[42] Dominique Rolin,et al. A New Substrate Cycle in Plants. Evidence for a High Glucose-Phosphate-to-Glucose Turnover from in Vivo Steady-State and Pulse-Labeling Experiments with [13C]Glucose and [14C]Glucose1 , 2005, Plant Physiology.
[43] Ganesh Sriram,et al. Quantification of Compartmented Metabolic Fluxes in Developing Soybean Embryos by Employing Biosynthetically Directed Fractional 13C Labeling, Two-Dimensional [13C, 1H] Nuclear Magnetic Resonance, and Comprehensive Isotopomer Balancing1[w] , 2004, Plant Physiology.
[44] S. Burgess,et al. 13C isotopomer analysis of glutamate by J-resolved heteronuclear single quantum coherence spectroscopy. , 2001, Analytical biochemistry.
[45] A. Sherry,et al. 13C isotopomer analysis of glutamate by heteronuclear multiple quantum coherence‐total correlation spectroscopy (HMQC‐TOCSY) , 1998, FEBS letters.
[46] Ray Freeman,et al. Projection-reconstruction technique for speeding up multidimensional NMR spectroscopy. , 2004, Journal of the American Chemical Society.
[47] Paul Schanda,et al. Very fast two-dimensional NMR spectroscopy for real-time investigation of dynamic events in proteins on the time scale of seconds. , 2005, Journal of the American Chemical Society.
[48] S. Akoka,et al. Resolution and sensitivity aspects of ultrafast J-resolved 2D NMR spectra. , 2008, Journal of magnetic resonance.