15.17) How many ATP can be produced from the catabolism of one glucose molecule when the two NADH from glycolysis use the glycerol 3-phosphate shuttle? For this calculation, assume that each NADH that undergoes oxidative phosphorylation produces 2.5 ATP, and each FADH₂ produces 1.5 ATP. Stage 2: Acetyl-CoA Production Stage 3: Citric Acid Cycle Stage 4: Oxidative Phosphorylation 2 NADHK shuttle glycerol 3-phosphate 2 FADH₂ 2 FADH₂ PKL 4 FADH₂ glucose Reactions of Glycolysis 2 pyruvates pyruvate oxidation/decarboxylation 2 acetyl-coenzyme A intramembrane space Citric Acid Cycle 1.5 ATP 1 FADH₂ Oxidative Phosphorylation 2 NADH 6 NADH 2 ATP 8 NADH cytoplasm mitochondria mitochondrial matrix 2 ATP 2.5 ATP 1 NADH 2 ATP 2 ATP 20 ATP 6 ATP ANSWER: 30 ATP
15.17) How many ATP can be produced from the catabolism of one glucose molecule when the two NADH from glycolysis use the glycerol 3-phosphate shuttle? For this calculation, assume that each NADH that undergoes oxidative phosphorylation produces 2.5 ATP, and each FADH₂ produces 1.5 ATP. Stage 2: Acetyl-CoA Production Stage 3: Citric Acid Cycle Stage 4: Oxidative Phosphorylation 2 NADHK shuttle glycerol 3-phosphate 2 FADH₂ 2 FADH₂ PKL 4 FADH₂ glucose Reactions of Glycolysis 2 pyruvates pyruvate oxidation/decarboxylation 2 acetyl-coenzyme A intramembrane space Citric Acid Cycle 1.5 ATP 1 FADH₂ Oxidative Phosphorylation 2 NADH 6 NADH 2 ATP 8 NADH cytoplasm mitochondria mitochondrial matrix 2 ATP 2.5 ATP 1 NADH 2 ATP 2 ATP 20 ATP 6 ATP ANSWER: 30 ATP
Biochemistry
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Chapter1: Biochemistry: An Evolving Science
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