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  2. File:Glucose metabolism.svg - Wikipedia

    en.wikipedia.org/wiki/File:Glucose_metabolism.svg

    Glucose-containing compounds are digested and taken up by the body in the intestines, including starch, glycogen, disaccharides and as monosaccharide. Glucose is stored in mainly the liver and muscles as glycogen. It is distributed and utilized in tissues as free glucose. To discuss image, please see Template talk:Human body diagrams

  3. Polysaccharide - Wikipedia

    en.wikipedia.org/wiki/Polysaccharide

    Glycogen is analogous to starch, a glucose polymer in plants, and is sometimes referred to as animal starch, [16] having a similar structure to amylopectin but more extensively branched and compact than starch. Glycogen is a polymer of α(1→4) glycosidic bonds linked with α(1→6)-linked branches.

  4. Glycogen - Wikipedia

    en.wikipedia.org/wiki/Glycogen

    Liver glycogen stores serve as a store of glucose for use throughout the body, particularly the central nervous system. [4] The human brain consumes approximately 60% of blood glucose in fasted, sedentary individuals. [4] Glycogen is an analogue of starch, a glucose polymer that functions as energy storage in plants.

  5. Glycogen synthase - Wikipedia

    en.wikipedia.org/wiki/Glycogen_synthase

    Glycogen synthase (UDP-glucose-glycogen glucosyltransferase) is a key enzyme in glycogenesis, the conversion of glucose into glycogen. It is a glycosyltransferase ( EC 2.4.1.11 ) that catalyses the reaction of UDP-glucose and (1,4- α - D -glucosyl) n to yield UDP and (1,4- α - D -glucosyl) n+1 .

  6. Starch synthase - Wikipedia

    en.wikipedia.org/wiki/Starch_synthase

    In enzymology, a starch synthase (EC 2.4.1.21) is an enzyme that catalyzes the chemical reaction. ADP-glucose + (1,4-alpha-D-glucosyl) n ADP + (1,4-alpha-D-glucosyl) n+1 Thus, the two substrates of this enzyme are ADP-glucose and a chain of D-glucose residues joined by 1,4-alpha-glycosidic bonds, whereas its two products are ADP and an elongated chain of glucose residues.

  7. File:Glycogen structure.svg - Wikipedia

    en.wikipedia.org/wiki/File:Glycogen_structure.svg

    B-type chains, making half of the branches, have two branch points, and all chains have the same length. E. Meléndez-Hevia, R. Meléndez and E. I. Canela (2000) "Glycogen Structure: an Evolutionary View", pp. 319–326 in Technological and Medical Implications of Metabolic Control Analysis (ed. A. Cornish-Bowden and M. L. Cárdenas), Kluwer Academic Publishers, Dordrecht

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