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V-acetyl glucosamine

Incorporation of /V-acetyl glucosamine into chitin was inhibited by 23% at 3 ng/larva, 75% at 10 ng, 90% at 30 mg, and 98% at 100 ng LD50, applied in combination with profenofos LD50... [Pg.995]

Carbohydrate Glucuronic acid (animals) /V-Acetyl glucosamine (rabbits)... [Pg.176]

Asialoglycoprotein-R (ASGPR, galactose recognition, size <10 nM) Mannose/lV-acetyl glucos-amine-R Mannose/V-acetyl glucosamine-R M6P/IGF II-R... [Pg.198]

Iduronate A/-Acetyl-galactosamine Iduronate /V-Acetyl-glucosamine... [Pg.93]

UDP-GIcNAc uridine diphosphate-/V-acetyl glucosamine enolpyruvoyl transferase... [Pg.684]

Figure 5.9 Typical ITC data for binding of a trisaccharide inhibitor (tri-/V-acetyl-glucosamine tri-NAG) to hen egg white lysozyme, in 0.1 mol dm ethanoate buffer, pH 5. Each exothermic heat pulse (upperpanel) corresponds to injection of 10 nL (0.01 cm ) of tri-NAG (0.45 mmol dm ) into the protein solution (36 nmol dm ). Integrated heat data (lower panel) constitute a differential binding curve that may be fit to a standard single-site binding model to give, in this instance, the stoichiometry of binding (number ol binding sites), A/=0.99 binding affinity. Figure 5.9 Typical ITC data for binding of a trisaccharide inhibitor (tri-/V-acetyl-glucosamine tri-NAG) to hen egg white lysozyme, in 0.1 mol dm ethanoate buffer, pH 5. Each exothermic heat pulse (upperpanel) corresponds to injection of 10 nL (0.01 cm ) of tri-NAG (0.45 mmol dm ) into the protein solution (36 nmol dm ). Integrated heat data (lower panel) constitute a differential binding curve that may be fit to a standard single-site binding model to give, in this instance, the stoichiometry of binding (number ol binding sites), A/=0.99 binding affinity.
Enzymatic method Chitosan dissolved in 0.2% acetic acid and incubated with 5 units of each exo-(3-D-glucoseaminidase, (3-iV-acetylhexosaminidase and chitosanase for 12h at 40°C Liberated amounts of glucosamine and V-acetyl glucosamine monosaccharides are determined by a specific colorimetric or HPLC method [215]... [Pg.522]

A structural polymer also present in small quantities is chitin, formed by repeating units of V-acetyl-glucosamine, localized at the neck between mother and bud cells. The synthesis and control of this polymer has been thoroughly studied by Cabib and his colleagues. ... [Pg.187]

V-acetyl glucosamine-6-phos-phate 2.2 Maley and Lardy (1956)... [Pg.95]

Keratan sulphate o-Ga lactose P-(l 4) /V-Acetyl- glucosamine 6-sulphate Ml-3)... [Pg.29]


See other pages where V-acetyl glucosamine is mentioned: [Pg.253]    [Pg.1008]    [Pg.1008]    [Pg.569]    [Pg.148]    [Pg.265]    [Pg.554]    [Pg.765]    [Pg.2646]    [Pg.259]    [Pg.263]    [Pg.89]    [Pg.90]    [Pg.229]    [Pg.41]    [Pg.547]    [Pg.457]    [Pg.457]    [Pg.333]    [Pg.153]    [Pg.154]    [Pg.392]    [Pg.205]    [Pg.3]    [Pg.62]    [Pg.189]    [Pg.71]    [Pg.1229]    [Pg.205]    [Pg.56]   
See also in sourсe #XX -- [ Pg.536 ]




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