On block 1 (Glycogen Metabolism) fill in the missing pathway (beginning at G6P and ending at Glycogen (n+1)). Names of enzymes and chemical structures of intermediates are NOT needed, rather only names of each intermediate. Also, you can assume that a glycogenin core has already been built. On this same block the student needs to show the opposing pathway starting at glycogen n+1 and proceeding to G6P. On block 2 (Glycolysis) fill in the missing pathway (beginning at glucose and ending at 2 pyruvate). Names of enzymes and chemical structures of intermediates are NOT needed, rather only names of each intermediate. From pyruvate illustrate the fate of pyruvate in anaerobic conditions and the two products produced by this fate.
On block 1 (Glycogen Metabolism) fill in the missing pathway (beginning at G6P and ending at Glycogen (n+1)). Names of enzymes and chemical structures of intermediates are NOT needed, rather only names of each intermediate. Also, you can assume that a glycogenin core has already been built. On this same block the student needs to show the opposing pathway starting at glycogen n+1 and proceeding to G6P. On block 2 (Glycolysis) fill in the missing pathway (beginning at glucose and ending at 2 pyruvate). Names of enzymes and chemical structures of intermediates are NOT needed, rather only names of each intermediate. From pyruvate illustrate the fate of pyruvate in anaerobic conditions and the two products produced by this fate.
Biochemistry
6th Edition
ISBN:9781305577206
Author:Reginald H. Garrett, Charles M. Grisham
Publisher:Reginald H. Garrett, Charles M. Grisham
Chapter22: Gluconeogenesis, Glycogen Metabolism, And The Pentose Phosphate Pathway
Section: Chapter Questions
Problem 8P
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Question
On block 1 (Glycogen
at Glycogen (n+1)). Names of enzymes and chemical structures of intermediates are NOT
needed, rather only names of each intermediate. Also, you can assume that a
glycogenin core has already been built. On this same block the student needs to show the
opposing pathway starting at glycogen n+1 and proceeding to G6P.
On block 2 (Glycolysis) fill in the missing pathway (beginning at glucose and
ending at 2 pyruvate). Names of enzymes and chemical structures of intermediates are NOT
ending at 2 pyruvate). Names of enzymes and chemical structures of intermediates are NOT
needed, rather only names of each intermediate. From pyruvate illustrate the fate of pyruvate
in anaerobic conditions and the two products produced by this fate.
in anaerobic conditions and the two products produced by this fate.
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