Structural characterization of β-d-(1→3, 1→6)-linked glucans using NMR spectroscopy
暂无分享,去创建一个
C. W. Kim | David L. Williams | Eun-hee Kim | C. Cheong | S. Lim | Y. Kim
[1] D. Brant,et al. Observations of the (1→3)-β-d-Glucan Linear Triple Helix to Macrocycle Interconversion Using Noncontact Atomic Force Microscopy , 1998 .
[2] A. Gil-Serrano,et al. Structural analysis of the exopolysaccharides produced by Lactobacillus spp. G-77. , 1998, Carbohydrate research.
[3] Lina Zhang,et al. Molecular weight and aggregation behaviour in solution of β-d-glucan from Poria cocos sclerotium , 1997 .
[4] B. Reinhold,et al. Architecture of the Yeast Cell Wall , 1997, The Journal of Biological Chemistry.
[5] E. Jones,et al. The application of various protic acids in the extraction of (1-->3)-beta-D-glucan from Saccharomyces cerevisiae. , 1997, Carbohydrate research.
[6] W. Kulicke,et al. Correlation between immunological activity, molar mass, and molecular structure of different (1-->3)-beta-D-glucans. , 1997, Carbohydrate research.
[7] K. Noguchi,et al. Single helical structure of curdlan triacetate , 1996 .
[8] David L. Williams,et al. Receptor binding and internalization of a water-soluble (1-->3)-beta-D-glucan biologic response modifier in two monocyte/macrophage cell lines. , 1996, Journal of immunology.
[9] A. Bacic,et al. Analysis of the structural heterogeneity of laminarin by electrospray-ionisation-mass spectrometry. , 1996, Carbohydrate research.
[10] Lina Zhang,et al. Conformational change of the β-d-glucan of Auricularia auricula-judae in water-dimethyl sulfoxide mixtures , 1995 .
[11] Y. Adachi,et al. Gel-to-sol transition of 13C-labeled (1-->3)-beta-D-glucan, 13C-SSG, assessed by 13C nuclear magnetic resonance (13C-NMR) spectroscopy. , 1995, Carbohydrate research.
[12] F. Kopp,et al. Structural properties of native and sonicated cinerean, a beta- (1-->3) (1-->6)-D-glucan produced by Botrytis cinerea. , 1995, Carbohydrate research.
[13] E. Jones,et al. NMR spectral analysis of a water-insoluble (1-->3)-beta-D-glucan isolated from Saccharomyces cerevisiae. , 1994, Carbohydrate research.
[14] H. Sahm,et al. Purification and characterization of four extracellular 1,3-β-glucanases of Botrytis cinerea , 1993 .
[15] David L. Williams,et al. Molecular weight analysis of a water-insoluble, yeast-derived (1 → 3)-β-d-glucan by organic-phase size-exclusion chromatography , 1992 .
[16] E. Jones,et al. Development of a water-soluble, sulfated (1-->3)-beta-D-glucan biological response modifier derived from Saccharomyces cerevisiae. , 1992, Carbohydrate research.
[17] David L. Williams,et al. Application of Aqueous Gel Permeation Chromatography with In-Line Multi-Angle Laser Light Scattering and Differential Viscometry Detectors for the Characterization of Natural Product Carbohydrate Pharmaceuticals , 1992 .
[18] J. Kraus,et al. Pythium aphanidermatum: culture, cell-wall composition, and isolation and structure of antitumour storage and solubilised cell-wall (1----3),(1----6)-beta-D-glucans. , 1992, Carbohydrate research.
[19] E. Jones,et al. A method for the solubilization of a (1----3)-beta-D-glucan isolated from Saccharomyces cerevisiae. , 1991, Carbohydrate research.
[20] H. Ensley,et al. Isolation, physicochemical characterization and preclinical efficacy evaluation of soluble scleroglucan. , 1991, The Journal of pharmacology and experimental therapeutics.
[21] T. Kiho,et al. Polysaccharides in fungi. XXVI. Two branched (1----3)-beta-D-glucans from hot water extract of Yu ĕr. , 1991, Chemical & pharmaceutical bulletin.
[22] H. Saitǒ,et al. Distinct gelation mechanism between linear and branched (1 → 3)‐β‐D‐glucans as revealed by high‐resolution solid‐state 13C NMR , 1990, Biopolymers.
[23] Yoshiyuki Suzuki,et al. Thermal denaturation of (1→3)-β-d-glucans in neutral aqueous solution above 130°: Effect on physicochemical properties , 1990 .
[24] M. Yokoi,et al. High-Resolution 13C NMR Study of (1→3)-β-D-Glucans in the Solid State: DMSO-Induced Conformational Change and Conformational Characterization by Spin-Relaxation Measurements , 1989 .
[25] M. Gidley. Quantification of the structural features of starch polysaccharides by n.m.r. spectroscopy , 1985 .
[26] R. R. Ernst,et al. Two‐dimensional spectroscopy. Application to nuclear magnetic resonance , 1976 .
[27] T. Usui,et al. Proton magnetic resonance spectra of D-gluco-oligosaccharides and D-glucans , 1974 .
[28] S. Hakomori. A RAPID PERMETHYLATION OF GLYCOLIPID, AND POLYSACCHARIDE CATALYZED BY METHYLSULFINYL CARBANION IN DIMETHYL SULFOXIDE. , 1964, Journal of biochemistry.
[29] A. Konno,et al. Characterization of curdlan in aqueous sodium hydroxide , 1998 .
[30] David L. Williams,et al. IDENTIFICATION OF PHOSPHATE SUBSTITUTION SITES BY NMR SPECTROSCOPY IN A WATER-SOLUBLE PHOSPHORYLATED (13)-BETA -D-GLUCAN , 1998 .
[31] B. Stone,et al. Chemistry and Biology of (1→3)-β-Glucans , 1992 .