In the diagram of glycogen shown below, circle the substrates for glycogen debranching enzyme.
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Q: glycogenolysis
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- Which pathway produces the most ATP molecules? lactic acid fermentation the Krebs cycle the electron transport chain glycolysisCHOOSE THE CORRECT LETTER Which of the following reaction types are NOT found in glycolysis?A. phosphorylationB. reductionC. oxidationD. isomerizationA(n) _________ reaction converts glycerol to glycerol 3-phosphate. This reaction requires __________. Blank 1 options- Oxidation-reduction Hydrolysis Isomerization Group transfer Internal rearrangement Blank 2 options- ATP & a kinase ADP & a kinase ATP and a phosphatase ADP and a phosphatase
- Which is the most versatile (related to bonding) glycogen metabolism (catabolism or anabolism) enzyme? What bond(s) does this enzyme make and/or break? Enzyme: Make: Break:Name of Enzyme Class Number of Enzyme Reaction Catalysed Hexokinase Phosphorylates glucose Complete the table by naming the Enzymes of GlycolysisThe first product formed during glycogenolysis (glycogen degradation at alpha 1,4 glycosidic bonds) is: a. Glucose 6 Phosphate b. UDP-glucose c. Glucose 1 phosphate d. Glucose e. Glucose 1,6 bisphosphate
- Which one of the following are correctly paired? a. glycogen synthesis: catabolic b. Glycogenolysis: catabolic c. Glycolysis: anabolic d. Gluconeogenesis: catabolic e. TCA cycle: anabolicWhich of the following enzymes is found in gluconeogenesis but not in glycolysis? a. phosphohexose isomerase b. hexokinase c. fructose 1,6-bisphosphatase d. phosphoglycerate kinaseWhat type of enzyme is responsible for initiating the process of glycolysis? Hydrolase. Dehydrogenase. Kinase. Phosphatase. Phosphorylase.
- In the glycogen synthase reaction, the precursor to glycogen is a. Glucose-1-P b. UDP-glucose c. UTP-glucose d. Glucose-6-PWhy does it take two reactions of gluconeogenesis to reverse the final step of glycolysis? Reverse reaction is not possible directly without proper enzyme.Reverse reaction is not possible directly due to low concentration of product.Reverse reaction is not energetically possible directly.Reverse reaction is not possible directly at body temperature.can be broken down by amylase.* A. glycogen B. amylopectin C. catalase D. amylase