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Fructoses fucose

Disaccharides analogous to isomaltulose, but containing other sugars in place of ot-D-glucose, can be obtained by similar bioconversions from different disaccharides.234 Sucrose analogues (galactose-fructose, xylose-fructose, fucose-fructose) have also been prepared by isomerization, catalyzed by an engineered fructosyltransferase.235,236... [Pg.239]

The concentrations of nine sugars (fucose, methylglucose, arabinose, glucose, fructose, lactose, sucrose, cellobiose, and maltose) in beer, milk, and soda are determined using an... [Pg.614]

The separation was carried out on a TSKgel Amide-80 column 4.6 mm i.d. and 25 cm long with a mobile phase consisting of a 80% acetonitrile 20% water mixture. The flow rate was 1 ml/min and the column was operated at an elevated temperature of 80°C. The saccharides shown were 1/ rhamnose, 2/ fucose, 3/ xylose, 4/ fructose, 5/ mannose, 6/ glucose, 7/ sucrose and 8/ maltose. The analysis was completed in less than 20 minutes. These types of separations including other biomonomers, dimers and polymers are frequently carried out employing refractive index detection. [Pg.186]

Figure 20 Post-column detection of mono- and disaccharides with 4-amino-benzoylbenzamide. Column CarboPac PA-1. Gradient 1-10 mm NaOH (0-20 min.), 10-20 mM NaOH (20-35 min). Flow rate 1 ml/min. Detection absorbance at 400 nm after reaction with 4-aminobenzoylhydrazide. (a) Standard mixture of fucose (1), arabinose (2), galactose (3), glucose (4), xylose and N-acetylglucosamine (5 and 6), allose (7), 3-fucosyllactose (8), fructose (9), lactose (10), Man-(3-(l,4)-GlcNac. (b) Normal urine, (c) Urine from a child with (3-mannosidosis. (Reproduced with permission of Academic Press from Peelen, G. O. H., de Jong, J. G. N., and Wever, R. A., Anal. Biochem., 198, 334, 1991.)... Figure 20 Post-column detection of mono- and disaccharides with 4-amino-benzoylbenzamide. Column CarboPac PA-1. Gradient 1-10 mm NaOH (0-20 min.), 10-20 mM NaOH (20-35 min). Flow rate 1 ml/min. Detection absorbance at 400 nm after reaction with 4-aminobenzoylhydrazide. (a) Standard mixture of fucose (1), arabinose (2), galactose (3), glucose (4), xylose and N-acetylglucosamine (5 and 6), allose (7), 3-fucosyllactose (8), fructose (9), lactose (10), Man-(3-(l,4)-GlcNac. (b) Normal urine, (c) Urine from a child with (3-mannosidosis. (Reproduced with permission of Academic Press from Peelen, G. O. H., de Jong, J. G. N., and Wever, R. A., Anal. Biochem., 198, 334, 1991.)...
Xylose Arabinose Ramnhose Fucose Galacturonic acid Glucuronic acid Glucose Mannose Galactose Fructose... [Pg.21]

Fructose bisphosphate aldolases 699 Fructose 6-phosphate 535, 693s Fructose 6-phosphate kinase 656 Fructose-1,6-bisphosphatase 645 Fructose-2,6-bisphosphatase 646 Fruit fly. See Drosophilia melanogaster Fucose (Fuc) 165s L-Fucose isomerase 693 Fucosyltransferase 184 Fucoxanthin 22... [Pg.917]

Four sugars quite frequently occur as furanose residues in Nature. These sugars are D-fructose, n-arabinose, D-ribose, and 2-deoxy-n-erytAro-pentose D-Galactose, L-fucose, and D-psicose have also been found naturally in the furanose form. [Pg.139]

Isbell and co-workers (51) have tried to minimize the oxygen reaction and to maximize the peroxide reaction. When a large excess of peroxide and a low temperature were maintained, they found that the monosaccharides are converted almost quantitatively to formic and two-carbon acids. Table II presents results for the peroxide oxidation of 14 sugars. The total acid produced from aldo-hexoses under favorable conditions is about six moles, consisting almost entirely of formic acid. Aldopentoses react more rapidly than aldo-hexoses and yield about five moles of formic acid per mole of pentose. Fructose and sorbose yield approximately five moles of total acid of which four moles are formic acid. Glycolic acid was identified qualitatively but not determined quantitatively. L-Rham-nose and L-fucose yield about five moles of acid, including four moles of formic acid. Acetic acid was identified only qualitatively. [Pg.89]

Scheme 24. Stereodivergent isomerizations of hexoketoses by rhamnose and fucose isomerases. Possible enzymatic pathways for the differentiation of fructose... Scheme 24. Stereodivergent isomerizations of hexoketoses by rhamnose and fucose isomerases. Possible enzymatic pathways for the differentiation of fructose...
For the carbohydrates especially, the amount of available crystal structural data decreases sharply with molecular complexity [479]. With the exception of the cyclodextrins, discussed in Part III, Chapter 18, there are less than 40 crystal structure analyses of oligosaccharides, of which less than 10 are trisaccharides, one is a tetrasaccharide, and one a hexasaccharide (Part III, Chap. 18). The majority of the basic monosaccharides that are the subunits of the polysaccharides that occur naturally have been studied for example, the pyranose forms of /7-arabinose, a-xylose, a- and -glucose, / fructose, a-sorbose, a-mannose, a- and -galactose, a-fucose, a-rhamnose, N-acetyl glucosamine, and mannosamine (Box 13.2). How-... [Pg.169]

Desulfonylation of 2-O-p-tolylsulfonyl or 2-0-(methylsulfonyl) derivatives of D-arabinose, D-xylose, and L-fucose with aqueous barium hydroxide yields D-ribose, D-lyxose, and 6-deoxy-L-talose, respectively, by way of a 1,2-anhydro sugar similarly, 3-0-(methyl-sulfonyl)-D-fructose affords D-psicose. [Pg.280]


See other pages where Fructoses fucose is mentioned: [Pg.101]    [Pg.157]    [Pg.101]    [Pg.157]    [Pg.1299]    [Pg.130]    [Pg.295]    [Pg.295]    [Pg.115]    [Pg.247]    [Pg.104]    [Pg.72]    [Pg.50]    [Pg.751]    [Pg.759]    [Pg.348]    [Pg.570]    [Pg.174]    [Pg.164]    [Pg.90]    [Pg.221]    [Pg.209]    [Pg.65]    [Pg.205]    [Pg.328]    [Pg.46]    [Pg.587]   
See also in sourсe #XX -- [ Pg.34 , Pg.44 ]




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