3. Give a schematic diagram of the events of the oxidative phosphorylation involving the electron transport, proton transport, ATP synthesis, reduction of oxygen бр
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3. Give a schematic diagram of the events of the oxidative phosphorylation involving the electron transport, proton transport, ATP synthesis, reduction of oxygen бр
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- Which of the following reaction pathways is not part of the second stage of aerobic respiration? a. electron transfer phosphorylation b. acetyl-CoA formation c. Krebs cycle d. glycolysis e. a and d3. Distinguish the correct statements about oxidative phosphorylation. I. 1 poir Oxidative phosphorylation generates ATP by transferring phosphate group directly to ADP molecule. II. Oxidative phosphorylation occurs inside mitochondria and the source of energy is from sunlight. II. Oxidative phosphorylation occurs inside mitochondria and the source of energy is from glucose. IV. Oxidative phosphorylation is based on electrons moving through ETC and production of a proton-motive force that drives ATP synthase. A. I & II O B. I & II O C. II & IV D. III & IV pc FATD1. Explain the Chemiosmotic theory with regard to ATP generation in oxidative phosphorylation. 2. Explain how Phosphorylase activation differs between the liver and the muscle. What is the role of Epinephrine in Glycogen metabolism. 3. List all the materials required for beta-oxidation of cholesterol from six-carbon intermediate Mevalonate.
- 2. a) Energetics of the electron transport. In the oxidative phase of oxidative phosphorylation, electrons are passed from NADH and ultimately to molecular oxygen through an electron transport chain comprised of multiple redox centers. Assume that an electron is passed through the chain along the route shown below. Clearly, there are steps missing, but we will skip those to emphasize the energetics of the electron transport. Calculate DE' and DGº' for each electron transfer step and record the values in the table. The reduction potentials for each of the redox centers are given in table 11.1. (F=96.4 kJ/V mol) Route: NADH → (Fe-S)N-5,6 Coenzyme Q → Cytochrome c₁ → Cytochrome a3 ⇒ 0₂ Table 11.1 STANDARD REDUCTION POTENTIALS (E°') FOR SELECTED ELECTRON CARRIERS IN THE ELECTRON TRANSPORT SYSTEM Electron carriers NAD+ + H+ + 2e → NADH Complex I (NADH-ubiquinone oxidoreductase) Fe-S (N-1b) Fe-S (N-3,4) Fe-S (N-5,6) Complex II (succinate dehydrogenase) FAD + 2H+ + 2e → FADH₂ (enzyme bound)…1. Draw and label a diagram that shows the organization of the glycolysis, Kreb's Cycle, and oxidative phosphorylation within the cell.1 what is the common intermediary in the catabolism of carbohydrates, proteins and lipids? 2 What cyclic pathway doe sthis common metabolite enter? 3 what are the roles of NAD+ and FAD in metabolism 4 what are the reduced forms of NAD+ and FAD? 5 what are the entry point for the reduced forms of NAD+ and FAD in the electron transport chain?
- 29. Which of the following pathways will result in carbon dioxide and NADH2 being released but not ATP? Group of answer choices Krebs cycle pyruvate oxidation glycolysis electron transport system10) a) Explain why the electron transport chain (ETC) is important for the energy producing in the cellular metabolism. b) Describe and explain the route followed by electrons from glucose to 02 and ATP synthesis. (think the energenics and chemiosmotic theory) Cytnsol mtochondrial montane intarmentne Iligh ner mtochordrial membane Matrt Law (1 ADPP ATP10. Using either the Oxidative Phosphorylation stage of cellular respiration or the Cytochrome complex of photosynthesis, DIAGRAM AND EXPLAIN how electron transport chains function and are used to generate ATP in plants and animals. Make sure to supply sufficient detail to clearly convey your understanding of the process/mechanism.
- 1. List the main coenzymes in metabolism and describe their roles. 2. What is the difference between electron transport chain and oxidative phosphorylation?22. Which pathway will result in the production of four carbon dioxide molecules, two ATP molecules, NADH2 and FADH2? Group of answer choices oxidative phosphorylation Krebs cycle glycolysis pyruvate oxidation1. Determine the answers of these multiple choices please its “a, b, c”. A) At the end of glycolysis, most of the energy of glucose undergoing aerobic respiration is found in the molecules: -Lactic acid -Of ATP's -Pyruvic acid -Of reduced NAD -Of PGAL B) The final product or final products of the light reaction during photosynthesis is or are: -PGA and carbon dioxide -Decomposition of ATP and water -ATP and NADPH2 training -Leribulose diphosphate (RDP) -ATP formation and carbon -Dioxide absorption: drugs C) Choose the substance that is produced during glycolysis and that will be sent to the Krebs cycle: -the pyruvate -lactic acid -the PGAL -The NADH -fructose