Structure-function relationships in microbial exopolysaccharides.
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[1] E. Conti,et al. Alginate from Pseudomonas fluorescens and P. putida: production and properties , 1994 .
[2] G. Phillips,et al. E.s.r. study of the conformational transition of spin-labelled xanthan gum in aqueous solution. , 1993, International journal of biological macromolecules.
[3] T. J. Pollock. Gellan-related polysaccharides and the genus Sphingomonas , 1993 .
[4] L. Navarini,et al. Solution properties of the capsular polysaccharide produced by Klebsiella pneumoniae SK1. , 1993, International journal of biological macromolecules.
[5] P. Jansson,et al. Structural studies of acetan, an exopolysaccharide elaborated by Acetobacter xylinum. , 1993, Carbohydrate research.
[6] H. Tamura,et al. Activation of limulus coagulation factor G by several (1-->3)-beta-D-glucans: comparison of the potency of glucans with identical degree of polymerization but different conformations. , 1993, Journal of biochemistry.
[7] L. Ielpi,et al. Sequential assembly and polymerization of the polyprenol-linked pentasaccharide repeating unit of the xanthan polysaccharide in Xanthomonas campestris , 1993, Journal of bacteriology.
[8] J. Stankowski,et al. Location of a second O-acetyl group in xanthan gum by the reductive-cleavage method. , 1993, Carbohydrate research.
[9] B. Courtois,et al. Structural characterization and rheological properties of an extracellular glucuronan produced by a Rhizobium meliloti M5N1 mutant strain. , 1993, Carbohydrate research.
[10] J. Harris,et al. Characterization of a variant of the polysaccharide acetan produced by a mutant of Acetobacter xylinum strain CR1/4. , 1993, The Journal of applied bacteriology.
[11] K. Knudsen,et al. Temperature‐Induced conformational transition in xanthans with partially hydrolyzed side chains , 1993, Biopolymers.
[12] M. Tako. Synergistic Interaction between Xanthan and Konjac Glucomannan in Aqueous Media , 1992 .
[13] E. Morris,et al. Selective removal of α-d-galactose side chains from Rhizobium capsular polysaccharide by guar α-d-galactosidase: effect on conformational stability and gelation , 1992 .
[14] J. Ganter,et al. On the solution properties of bacterial polysaccharides of the gellan family. , 1992, Carbohydrate research.
[15] L. Navarini,et al. Solution conformation and properties of the galactoglucan from Rhizobium meliloti strain YE-2(S1). , 1992, Carbohydrate research.
[16] K. Nishinari,et al. Effects of Potassium Chloride and Sodium Chloride on the Thermal Properties of Gellan Gum Gels. , 1992, Bioscience, biotechnology, and biochemistry.
[17] A. Gil-Serrano,et al. Structure of the acidic exopolysaccharide secreted by Rhizobium leguminosarum biovar. phaseoli CFN42. , 1992, Carbohydrate research.
[18] R. Chandrasekaran,et al. Roles of potassium ions, acetyl and L-glyceryl groups in native gellan double helix: an X-ray study. , 1992, Carbohydrate research.
[19] J. Stankowski,et al. Location of the O-acetyl group in welan by the reductive-cleavage method. , 1992, Carbohydrate research.
[20] K. Takeo,et al. Thermally induced conformational transition of double‐stranded xanthan in aqueous salt solutions , 1991, Biopolymers.
[21] J. A. Ahlgren. Purification and Characterization of a Pyruvated-Mannose-Specific Xanthan Lyase from Heat-Stable, Salt-Tolerant Bacteria , 1991, Applied and environmental microbiology.
[22] O. Smidsrod,et al. Hydrolysis of xanthan in dilute acid: Effects on chemical composition, conformation, and intrinsic viscosity☆ , 1991 .
[23] R. Chandrasekaran,et al. X-ray and computer modeling studies on gellan-related polymers: molecular structures of welan, S-657, and rhamsan. , 1991, Carbohydrate research.
[24] P. Albersheim,et al. The degree of esterification and points of substitution by O-acetyl and O-(3-hydroxybutanoyl) groups in the acidic extracellular polysaccharides secreted by Rhizobium leguminosarum biovars viciae, trifolii, and phaseoli are not related to host range. , 1991, The Journal of biological chemistry.
[25] M. Rinaudo,et al. Polyelectrolyte and rheological studies on the polysaccharide welan. , 1990, International journal of biological macromolecules.
[26] 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.
[27] N. Ohno,et al. Reactivity of Limulus amoebocyte lysate towards (1 → 3)-β-d-glucans , 1990 .
[28] P. Albersheim,et al. Structural analysis of an acidic polysaccharide secreted by Xanthobacter sp. (ATCC 53272). , 1990, Carbohydrate research.
[29] I. Sutherland,et al. The influence of acetyl and pyruvate substituents on the helix-coil transition behaviour of xanthan , 1990 .
[30] M. Rinaudo,et al. Conformational transition and polyelectrolyte behaviour of a succinoglycan polysaccharide. , 1990, International journal of biological macromolecules.
[31] M. Rinaudo,et al. Rheological behaviour of a succinoglycan polysaccharide in dilute and semi-dilute solutions. , 1990, International journal of biological macromolecules.
[32] Yoshiyuki Suzuki,et al. Thermal denaturation of (1→3)-β-d-glucans in neutral aqueous solution above 130°: Effect on physicochemical properties , 1990 .
[33] I. Sutherland,et al. Influence of acetyl and pyruvate substituents on the solution properties of xanthan polysaccharide. , 1990, International journal of biological macromolecules.
[34] M. Miles,et al. Molecular origins of acetan solution properties. , 1989, International journal of biological macromolecules.
[35] K. Jann,et al. Bacterial polysaccharide capsule synthesis, export and evolution of structural diversity , 1989, Molecular microbiology.
[36] M. Dentini,et al. Influence of charged groups on the conformational stability of succinoglycan in dilute aqueous solution. , 1989, International journal of biological macromolecules.
[37] A. P. Gunning,et al. Cation-dependent gelation of the acidic extracellular polysaccharides of Rhizobium leguminosarum: a non-specific mechanism for the attachment of bacteria to plant roots , 1989 .
[38] M. Tako,et al. Evidence for Intramolecular Associations in Xanthan Molecules in Aqueous Media , 1989 .
[39] I. Sutherland,et al. Long-term storage of xanthan in seawater at elevated temperature: physical dimensions and chemical composition of degradation products. , 1989, International journal of biological macromolecules.
[40] I. Sutherland,et al. Synthesis and properties of a mutant type of xanthan , 1989 .
[41] A. Harada,et al. Electron Microscopy of the Gel-forming Ability of Polysaccharide Food Additives , 1989 .
[42] L. Haaheim,et al. Monoclonal antibodies reacting with the exopolysaccharide xanthan from Xanthomonas campestris. , 1989, Journal of general microbiology.
[43] S. Paoletti,et al. The interaction of lead(II) with glycuronans: U.v. absorption and circular dichroism spectra , 1988 .
[44] Rengaswami Chandrasekaran,et al. Cation interactions in gellan: an X-ray study of the potassium salt , 1988 .
[45] L. Ju,et al. The anomaly of oxygen diffusion in aqueous xanthan solutions , 1988, Biotechnology and bioengineering.
[46] S. Arnott,et al. The crystal structure of gellan , 1988 .
[47] Wei Liu,et al. Stability of xanthan in aqueous sodium chloride at elevated temperature , 1987 .
[48] I. Sutherland. Xanthan lyases--novel enzymes found in various bacterial species. , 1987, Journal of general microbiology.
[49] M. Tako,et al. Rheological properties of Ca salt of Xanthan in aqueous media , 1987 .
[50] M. Rinaudo,et al. Influence of acetyl and pyruvate contents on rheological properties of xanthan in dilute solution , 1987 .
[51] R. K. Richardson,et al. Non-linear viscoelasticity of polysaccharide solutions. 2: Xanthan polysaccharide solutions , 1987 .
[52] D. Brant,et al. Light-scattering investigation of the temperature-driven conformation change in xanthan , 1987 .
[53] L. Ielpi,et al. A xanthan-gum-like polysaccharide from Acetobacter xylinum , 1987 .
[54] S. Pérez,et al. Molecular modelling of the xanthan chain conformations , 1987 .
[55] J. Marrelli,et al. Genetically engineered polymers: manipulation of xanthan biosynthesis , 1987 .
[56] E. Atkins,et al. Effect of acetylation on he molecular interactions and gelling properties of a bacterial polysaccharide , 1987 .
[57] E. Morris,et al. Structure and gelation of rhizobium capsular polysaccharide , 1987 .
[58] D. Brant,et al. The influence of sidechains on the calculated dimensions of three related bacterial polysaccharides. , 1987, Carbohydrate research.
[59] M. Dentini,et al. The influence of side-chains on the dilute-solution properties of three structurally related, bacterial anionic polysaccharides , 1987 .
[60] A. Elgsaeter,et al. The molecular size and shape of xanthan, xylinan, bronchial mucin, alginate, and amylose as revealed by electron microscopy. , 1987, Carbohydrate research.
[61] M. Rinaudo,et al. Comparative behavior of the bacterial polysaccharides xanthan and succinoglycan , 1987 .
[62] M. Rinaudo,et al. Properties of xanthan gum in aqueous solutions: Role of the conformational transition , 1986 .
[63] J. B. Pedley,et al. Influence of anions on the properties of microbial polysaccharides in solution , 1986 .
[64] E. Atkins. Biomolecular structures of naturally occurring carbohydrate polymers , 1986 .
[65] M. Miles,et al. Effect of natural modifications on the functional properties of extracellular bacterial polysaccharides , 1986 .
[66] A. Dell,et al. Identification and location of l-glycerate, an unusual acyl substituent in gellan gum , 1986 .
[67] E. Atkins,et al. Helical conformations of gellan gum , 1986 .
[68] M. Dentini,et al. Comparative analysis of the behavior of gellan gum (S-60) and welan gum (S-130) in dilute aqueous solution , 1986 .
[69] M. Miles,et al. Intermolecular binding of xanthan gum and carob gum , 1986, Nature.
[70] I. Sutherland,et al. Effect of Growth Conditions on the Production, Composition and Viscosity of Xanthomonas campestris Exopolysaccharide , 1986 .
[71] M. O’Neill,et al. Structure of the extracellular gelling polysaccharide produced by Enterobacter (NCIB 11870) species. , 1986, Carbohydrate research.
[72] M. Rinaudo,et al. Comparative studies of extracellular polysaccharide elaborated by Rhizobium meliloti strain M5N1 in defined medium and in non-growing cell suspensions , 1986 .
[73] J. Kamerling,et al. A bacteriophage-associated lyase acting on Klebsiella serotype K5 capsular polysaccharide. , 1985, Carbohydrate research.
[74] M. Rinaudo,et al. On the thermal stability of xanthan gum , 1985 .
[75] G. Phillips,et al. Depolymerization of xanthan by iron-catalysed free radical reactions , 1985 .
[76] M. Rinaudo,et al. Sodium and calcium counterion activity in the presence of xanthan polysaccharide , 1985 .
[77] E. Reisenhofer,et al. Copper(II) binding by natural ionic polysaccharides: Part II. Polarographic data , 1984 .
[78] E. Reisenhofer,et al. Copper(II) binding by natural ionic polysaccharides: Part I. Potentiometric and spectroscopic data , 1984 .
[79] I. Sutherland. Hydrolysis of unordered xanthan in solution by fungal cellulases , 1984 .
[80] E. Morris,et al. Mechanism and dynamics of conformational ordering in xanthan polysaccharide. , 1984, Journal of molecular biology.
[81] H. Fujita,et al. Double-Stranded Helix of Xanthan in Dilute Solution: Evidence from Light Scattering , 1984 .
[82] Per-Erik Jansson,et al. Structural studies of gellan gum, an extracellular polysaccharide elaborated by Pseudomonas elodea , 1983 .
[83] A. V. Neerven,et al. Gel-forming capsular polysaccharide of Rhizobium leguminosarum and Rhizobium trifolii , 1983 .
[84] R. Marchessault,et al. Packing analysis of carbohydrates and polysaccharides. Part 14. Triple-helical crystalline structure of curdlan and paramylon hydrates , 1983 .
[85] M. Miles,et al. Rheology and microstructure of solutions of the microbial polysaccharide from Pseudomonas elodea , 1983 .
[86] M. Miles,et al. Fibre-diffraction studies of the extracellular polysaccharide from Pseudomonas elodea , 1982 .
[87] E. Morris,et al. Interactions of alginates with univalent cations , 1982 .
[88] A. Jamieson,et al. Conformation of xanthan dissolved in aqueous urea and sodium chloride solutions , 1982 .
[89] I. Sutherland. Xanthomonas polysaccharides — Improved methods for their comparison , 1981 .
[90] L. Ielpi,et al. Lipid‐linked intermediates in the biosynthesis of xanthan gum , 1981, FEBS letters.
[91] R. Marchessault,et al. Triple-Helical Structure of(1→3)-β-D-Glucan , 1980 .
[92] E. W. Sheppard,et al. Conformation and shear stability of xanthan gum in solution , 1980 .
[93] H. Fujita,et al. Triple helix of aschizophyllum commune polysaccharide in aqueous solution , 1980 .
[94] R. Marchessault,et al. Fine structure of (1→3)-β-d-glucans: curdlan and paramylon , 1979 .
[95] E. Atkins,et al. Molecular structures for microbial polysaccharides. X-ray diffraction from the capsular polysaccharide of Klebsiella K-type 5 , 1979 .
[96] M. Rinaudo,et al. Polyelectroyte behavior of a bacterial polysaccharide from Xanthomonas campestris: Comparison with carboxymethylcellulose , 1978 .
[97] I. Davidson. Production of polysaccharide by Xanthomonas campestris in continuous culture , 1978 .
[98] T. Harada,et al. Acidic polysaccharides containing succinic acid in various strains of Agrobacterium , 1978 .
[99] C. J. Lawson,et al. Oligosaccharides produced by partial acetolysis of xanthan gum , 1977 .
[100] G. R. Sanderson,et al. Covalent structure of the extracellular polysaccharide from Xanthomonas campestris: evidence from partial hydrolysis studies. , 1976, Carbohydrate research.
[101] P. Jansson,et al. Structure of extracellular polysaccharide from Xanthomonas campestris. , 1975, Carbohydrate research.
[102] K. Ogawa,et al. The dependence of the conformation of a (1→3)-β-D-glucan on chain-length in alkaline solution , 1973 .
[103] I. Sutherland. Phage-induced fucosidases hydrolysing the exopolysaccharide of Klebsiella arogenes type 54 [A3(S1)]. , 1967, The Biochemical journal.
[104] G. Brownsey,et al. Xanthan-locust bean gum interactions and gelation , 1993 .
[105] A. Elgsaeter,et al. Rheology of xanthan and scleroglucan in synthetic seawater , 1992 .
[106] J. L. Geddie. Cation binding by bacterial and algal polysaccharides , 1992 .
[107] O. Smidsrod,et al. Gelation of xanthan with trivalent metal ions , 1992 .
[108] A. Harada,et al. Electron Microscopic Studies on the Ultrastructure of Curdlan and Other Polysaccharides in Gels Used in Foods , 1991 .
[109] M. Miles,et al. X-Ray fibre diffraction studies of members of the gellan family of polysaccharides , 1991 .
[110] J. Antón,et al. Biopolymer Production by Haloferax Mediterranei , 1991 .
[111] I. Sutherland,et al. Influence of the acetyl substituent on the interaction of xanthan with plant polysaccharides — II. Xanthan-guar gum systems , 1990 .
[112] I. Sutherland,et al. Acid hydrolysis and high-performance liquid chromatography of xanthan , 1990 .
[113] R. Millane,et al. X-ray fiber diffraction studies of a variant of xanthan gum in which the sidechain terminal mannose unit is absent , 1990 .
[114] D. R. Underwood,et al. Development of a biotechnological process for the modification of galactomannan polymers with plant α-galactosidase , 1990 .
[115] H. Funahashi,et al. Xanthan gum production in a fermentor with twin impellers , 1990 .
[116] A. P. Gunning,et al. Gelation of members of a family of branched anionic heteropolysaccharides produced by certain strains of Rhizobium leguminosarum , 1990 .
[117] R. Chandrasekaran,et al. The influence of calcium ions, acetate and l-glycerate groups on the gellan double-helix , 1990 .
[118] K. P. Shatwell. The influence of acetyl and pyruvic acid substituents on the solution and interaction properties of xanthan. , 1989 .
[119] N. Cheetham,et al. The effect of pyruvate on viscosity properties of xanthan , 1989 .
[120] I. Sutherland,et al. Thermal stability of xanthan preparations , 1988 .
[121] A. P. Gunning,et al. Coacervation of gelatin-XM6 mixtures and their use in microencapsulation , 1988 .
[122] O. Smidsrod,et al. Gelation of gellan gum , 1987 .
[123] G. Brigand,et al. Molecular weight of scleroglucan and other extracellular microbial polysaccharides by size-exclusion chromatography and low angle laser light scattering , 1986 .
[124] I. Sutherland,et al. Modified xanthan—its preparation and viscosity , 1983 .
[125] E. Morris,et al. Characterisation of cation binding and gelation of polyuronates by circular dichroism , 1982 .
[126] S. Paoletti,et al. Monomer composition and acetyl content as main determinants of the ionization behavior of alginates , 1982 .
[127] E. Morris,et al. Kinetic evidence for intramolecular conformational ordering of the extracellular polysaccharide (xanthan) from Xanthomonas campestris , 1980 .
[128] N. Kasai,et al. Electron Microscopic Study on the Ultrastructure of Curldan Gel: Assembly and Dissociation of Fibrils by Heating , 1979 .
[129] S. Arnott,et al. Xanthan gum : molecular conformation and interactions , 1977 .
[130] I. Dea,et al. Chemistry and Interactions of Seed Galactomannans , 1975 .
[131] I. Nakanishi,et al. Complex formation of gel-forming bacterial (1→3)-β-D-glucans (curdlan-type polysaccharides) with dyes in aqueous solution , 1974 .