Which disaccharide forms a 1,1-glycosidic linkage?
20. Carbohydrates
Disaccharides
- Multiple Choice1363views1rank
- Multiple Choice
What is the identity of the disaccharide below?
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Draw a disaccharide of two cyclic mannose molecules attached by an α-1,4 glycosidic linkage. Explain why the glycosidic products in Problem 20.58 are not reducing sugars, but the product in this problem is a reducing sugar.
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Lactose and maltose are reducing disaccharides, but sucrose is a nonreducing disaccharide. Explain.
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Trehalose, a disaccharide found in the blood of insects, has the following structure. What simple sugars would you obtain on hydrolysis of trehalose? (Hint: Rotate one of the rings in your head or redraw it rotated.)
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Are the α and β forms of the disaccharide lactose enantiomers of each other? Why or why not?
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Indicate whether each disaccharide in Problem 13.41 is a reducing sugar or not.
a.
b.
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Identify the disaccharide that fits each of the following descriptions:
a. ordinary table sugar
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Isomaltose, obtained from the breakdown of starch, has the following Haworth structure:
a. Is isomaltose a mono-, di-, or polysaccharide?
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Isomaltose, obtained from the breakdown of starch, has the following Haworth structure:
b. What are the monosaccharides in isomaltose?
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Isomaltose, obtained from the breakdown of starch, has the following Haworth structure:
d. Is this the α or β isomer of isomaltose?
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α−Cellobiose is a disaccharide obtained from the hydrolysis of cellulose. It is quite similar to maltose except it has a β(1→4)−glycosidic bond. Draw the Haworth structure for α−cellobiose.
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For each of the following, give the monosaccharide units produced by hydrolysis, the type of glycosidic bond, and the name of the disaccharide, including α or β:
a.
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The disaccharide trehalose found in mushrooms is composed of two α-D-glucose molecules joined by an α(1→1)−glycosidic bond. Draw the Haworth structure for trehalose.
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Gentiobiose is found in saffron.
b. Is gentiobiose a reducing sugar? Explain.
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