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Synthesis SUGAR

BAER FISCHER Amino sugar synthesis Synthesis of 3-nrtro and 3-amlno sugars by aldol condensation of sugar-derived dlaktehydes with nilroalkanes. [Pg.10]

Succinyl-CoA derived from propionyl-CoA can enter the TCA cycle. Oxidation of succinate to oxaloacetate provides a substrate for glucose synthesis. Thus, although the acetate units produced in /3-oxidation cannot be utilized in glu-coneogenesis by animals, the occasional propionate produced from oxidation of odd-carbon fatty acids can be used for sugar synthesis. Alternatively, succinate introduced to the TCA cycle from odd-carbon fatty acid oxidation may be oxidized to COg. However, all of the 4-carbon intermediates in the TCA cycle are regenerated in the cycle and thus should be viewed as catalytic species. Net consumption of succinyl-CoA thus does not occur directly in the TCA cycle. Rather, the succinyl-CoA generated from /3-oxidation of odd-carbon fatty acids must be converted to pyruvate and then to acetyl-CoA (which is completely oxidized in the TCA cycle). To follow this latter route, succinyl-CoA entering the TCA cycle must be first converted to malate in the usual way, and then transported from the mitochondrial matrix to the cytosol, where it is oxida-... [Pg.793]

Brockamp, H.P, Kula, M.R. and Goetz, F. (1991) A robust microbial fructose-1,6-diphosphate aldolase its manufacture and use in sugar synthesis. DE3940431. [Pg.336]

Another example of the ability of proteinogenic amino acids, small peptides, and amines to catalyse the formation of new C-C bonds has been demonstrated by Weber and Pizzarello they were able to carry out model reactions for the stereospecific synthesis of sugars (tetroses) using homochiral L-dipeptides. The authors achieved a D-enantiomeric excess (ee) of more than 80% using L-Val-L-Val as the peptide catalyst in sugar synthesis (in particular D-erythrose) via self-condensation of glycol aldehyde. [Pg.103]

Oxidation of isomaltulose and related sugars synthesis of CMGlu and CMGL... [Pg.108]

The synthesis shown in Fig. 40 provided access to heptoses,55 but according to our definition, this is not a higher sugar synthesis. However, the approach to such derivative was based on the Baylis-Hillman reaction of acyclic sugar-derived aldehydes, a reaction not commonly applied in sugar chemistry and worth to mention in this review. [Pg.245]

Fig. 33 General retrosynthetic scheme for imino sugars synthesis. Fig. 33 General retrosynthetic scheme for imino sugars synthesis.
Horton, D. and Philips, K.D., Diazo derivatives of sugars. Synthesis of methyl 2-deoxy-2-diazo-D-arahino-hexonate, its behaviour on photolysis and thermolysis, and conversion into a pyrazole derivative. Carbohydr. Res., 1972, 22, 151. [Pg.325]

DHAP-Dependent Aldolases in the Core of Aza Sugar Synthesis... [Pg.68]

In vitro multi-enzyme systems are set up by the combination of enzyme modules including pathway and even pathway-unrelated enzymes. Also, the synthesis of saccharides in combination with de novo enzymatic sugar synthesis can be accomplished. This so-called combinatorial biocatalysis can be performed in sequential reactors or in a one-pot reaction vessel which challenges further reaction engineering for optimization. Even the combination of an enzyme module with a chemical... [Pg.85]


See other pages where Synthesis SUGAR is mentioned: [Pg.751]    [Pg.571]    [Pg.266]    [Pg.110]    [Pg.159]    [Pg.46]    [Pg.278]    [Pg.285]    [Pg.91]   
See also in sourсe #XX -- [ Pg.593 , Pg.615 ]

See also in sourсe #XX -- [ Pg.593 , Pg.615 ]

See also in sourсe #XX -- [ Pg.593 , Pg.615 ]

See also in sourсe #XX -- [ Pg.2 ]

See also in sourсe #XX -- [ Pg.2 , Pg.742 ]

See also in sourсe #XX -- [ Pg.625 ]




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2- Deoxy-2,2-difluoro sugars, synthesis

2- Deoxy-2-fluoro sugars synthesis

2.6- Dideoxy sugars synthesis

5-Thio sugar nucleosides, synthesis

Acetylated sugars, glycoside synthesis

Acrylates, synthesis from sugars

Aldonolactone sugars synthesis

Alkynic sugar, synthesis

Amino carba-sugars, synthesis

Amino sugars synthesis from glycin

Amino sugars total synthesis

Amino sugars, synthesis

Anhydro sugars in synthesis

Anhydro sugars synthesis

Ascent of De Novo Sugar Synthesis

Aza sugar synthesis

BAER - FISCHER Ammo sugar synthesis

BAER-FISCHER Amino Sugar Synthesis

Bicyclic precursors, sugar synthesis

Biological sugar synthesis

Branched amino sugars synthesis

Carbohydrates sugar synthesis, 2- thiazole

Carbohydrates, Deoxysugars, and Sugar Phosphate Synthesis

Chemoenzymatic synthesis, sugar

Chemoenzymatic synthesis, sugar polymers

Chiral Aldehydes as Dienophiles Synthesis of Long-Chain Sugars

Cyclizations carba-sugar synthesis

DTDP-deoxy sugars synthesis

Deoxy sugars terminal, synthesis

Deoxyfluoro sugars, synthesis

Deoxygenated sugars synthesis

Eight-carbon sugars synthesis

Enantiomeric carba-sugars, synthesis

Enzymatic synthesis sugar fatty acid esters

Epoxides, ring opening reactions sugar synthesis

Fluoro sugars synthesis

Glycosyltransferases nucleotide sugar synthesis

Halogeno sugar, synthesis

Isomeric carba-sugars, synthesis

Isotope labeled sugars synthesis

Lactones, 4-thio sugar, synthesis

Natural/unnatural sugar synthesis

Nine-carbon sugars synthesis

Nitro sugars, synthesis

Nucleoside diphosphate sugar synthesis

Nucleoside sugar phosphates, synthesis

Nucleotide sugar intermediates, synthesis

Nucleotide sugar synthesis

Phosphorane sugar, synthesis

Preparation of Sugar Derivatives Employed in Glycoside Synthesis

Pseudo-sugars synthesis

Pyranose sugars, synthesis

Racemic carba-sugars, synthesis

Rearrangement branched-chain sugar synthesis

Solid-phase synthesis, of sugar fatty acid

Solid-phase synthesis, of sugar fatty acid monoesters

Stereoselective Syntheses with Sugar Metal Carbenes

Sugar Beet Syrup and Molasses as Low-cost Feedstock for Fructooligosaccharide Synthesis

Sugar Intermediates Used in the Synthesis of Glycosiduronic Acids

Sugar Synthesis by Microfluidic Techniques

Sugar aminodeoxy, synthesis

Sugar chemical synthesis

Sugar chemo-enzymatic synthesis

Sugar derived heptosyl bromide in KDN synthesis

Sugar derived heptosyl bromide in Neu5Ac synthesis

Sugar fatty acid esters chemical synthesis

Sugar fatty acid esters synthesis

Sugar isothiocyanates synthesis

Sugar isothiocyanates synthesis, method

Sugar phosphates synthesis

Sugar synthesis Lewis acids

Sugar synthesis catalyst

Sugar synthesis cycloaddition reactions

Sugar synthesis dimethylaluminium chloride

Sugar synthesis from nonsugars

Sugar synthesis furfuryl alcohols

Sugar synthesis hetero-Diels-Alder reaction

Sugar synthesis history

Sugar synthesis hydrazones

Sugar synthesis trimethylsilyl triflate

Sugar synthesis zinc iodide

Sugar synthesis, examples

Sugar thioamides synthesis

Sugar thiocyanates synthesis

Sugar thiourea synthesis

Sugar, complex synthesis

Sugar-peptide structures synthesis

Sugars 3-amino-2,3-dideoxy, synthesis

Sugars Kiliani-Fischer synthesis

Sugars acetylenic derivatives, synthesis

Sugars as Chiral Starting Materials in Enantiospecific Synthesis

Sugars branched-chain, synthesis

Sugars chlorodeoxy, synthesis

Sugars deoxy, synthesis

Sugars proteoglycan synthesis

Sugars thio, synthesis

Sugars unsaturated, synthesis

Sugars, reduced, synthesis

Sugars, synthesis, 2- thiazole

Synthesis and polymerization, of anhydro sugar

Synthesis continued) sugar, biological

Synthesis from Amino-sugars

Synthesis of Deoxy Sugars from Aldonolactones

Synthesis of Enantiomeric Amino Carba-sugars

Synthesis of Enantiomeric Carba-sugars

Synthesis of Higher Sugars

Synthesis of Naturally Occurring, Branched Sugars

Synthesis of Oligosaccharides Having a 5-Thio Sugar Moiety

Synthesis of Racemic Amino Carba-sugars

Synthesis of Racemic Carba-sugars

Synthesis of Sugar Nucleotides

Synthesis of branched-chain sugars

Synthesis of deoxy sugars

Synthesis of sugars

Synthesis of sugars from non-carbohydrate substrates

Synthesis of the Sugars

Synthesis sugar derivs

Tetradeoxy sugars, synthesis

The Synthesis of Sugars from Non-carbohydrate Substrates

The Use of Anhydro Sugars in Synthesis

Trideoxy sugars, synthesis

Use for Nucleotide, Sugar Phosphate, Phospholipid or Phosphoprotein Synthesis

Use in fluorinated sugar synthesis

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