What pathway does glucose travel through? O glycolysis O creatine phosphorylation O aerobic phosphorylation O electron transport chain
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It is broken down through a series of metabolic pathways to produce ATP, the energy currency of the cell. Show more…
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Which of the following pathways requires molecular oxygen $\left(\mathrm{O}_{2}\right) ?$ a. glycolysis b. electron transfer phosphorylation in mitochondria c. the citric acid cycle d. alcoholic fermentation
E3. Which of the following statements is correct? The pathway of glycolysis: A) produces 3 ATP molecules when a molecule of glucose is broken down to pyruvate; B) produces 2 ATP molecules when a molecule of free glucose within a muscle cell is broken down to pyruvate; C) consumes 1 ATP molecule to enable a glucose unit from glycogen stored in muscle to enter the pathway as glucose-6-phosphate; D) produces 2 ATP molecules by oxidative phosphorylation; E) is stimulated by high concentrations of ATP in the cell. E4. Which of the following statements about anaerobic glycolysis is INCORRECT? A) The pathway converts glucose to lactate. B) The pathway is called anaerobic because no oxygen is consumed. C) The pathway produces ATP and this is called substrate level phosphorylation. D) Substrate level phosphorylation is a synonym for oxidative phosphorylation. E) The NADH made in one part of the pathway is used up in another part of the pathway. E5. The citric acid cycle is regulated in a manner similar to glycolysis. Which molecule is an allosteric activator of BOTH of those pathways? A) ATP B) NAD+ C) ADP D) citrate E) NADH E6. Which of the following is NOT a feature of oxidative phosphorylation? A) Direct transfer of phosphate from a substrate molecule to ADP. B) An electrochemical gradient across the inner mitochondrial membrane. C) A membrane-bound ATP synthase. D) A proton motive force. E) ATP synthase acts as a molecular motor.
Maitreya E.
the complete oxidation of glucose to CO2 + H2O + ATP uses all these pathways EXCEPT citrate cycle oxidative phosphorylation electron transport chain beta oxidation glycolysis
Adi S.
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