During the process of anaerobic cellular respiration, the final electron accepter in the electron transport chain is A NADH B. 0₂ C. ATP D H E. H₂O
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- Which of the following statements about oxidative phosphorylation is correct? O H+ ions are transferred from Complex I or Complex II to ATP synthase where ATP production occ O Proton pumps transfer electrons from the cytosol to the mitochondrial matrix as electrons are tra O The chemical and electrical gradient is established between the intermembrane space and the ma electron carriers. O ATP synthase pumps electrons back to the intermembrane space as a consequence of electrocher mitochondrial matrix. • Previouswithout oxygen US V 11 glucose G 2 13 14 pyruvate with oxygen acetyl Col CO₂ CO₂ Using the diagram above, fill in the chart below for a summary of cellular respiration taking place in the mitochondria. X₂ X² но B I 2 4 electron transport system C > X Q 흐트 E Summary of Cellular Respiration Name of Location Brief Is ATP process of process Description produced? I E D10) 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 ATP
- Referring to the figure below, explain why NADH yields more ATP than FADH2 does. Electron-transport and proton pump Oxidative phosphorylation Outer mitochondrial membrane H* -Intermembrane H+ H+ H+ space H* H+ H+ Cytochrome c H+ COQH, CoQ UU COQH2 CoQ JU U Inner mitochondrial membrane Ht e ATPase Complex II Complex II Complex IV Complex e ADP +P - Mitochondrial matrix NADH NAD+ FADH2 FAD АТР H+ -H+ H+ H20Medical researchers are studying a patient with the newly discovered u LEKS metabolic syndrome, in which a genetic mutaton prevents NADH produced in the cytosol from being reoxidized by the electron transport chain. Suppose the following nutrient molecule is digested and metabolized by this patient under anaerobic conditions, e.g. during a sudden intense exertion: de HO-CH: -OH Он н. HO H OH How many ATP molecules will uttimately be produced by the catabolism of this molecule? Note: you can ussume the catabohism is as complete as it can be under the conditions given above. How many molecules of pyruvate will be produced during dycalysist How many maleoules of lactate will be producedIn the presence of excess oxygen, a complete oxidation of seven molecules of glucose into carbon dioxide and water, by a yeast cell, would produce approximately ATP molecules via oxidative phosphorylation only. (Consider NADH = 3 ATP and FADH2 = 2 ATP)
- Give all the reactions that will produce ATP either by substrate-level phosphorylation (SLP) or by oxidative phosphorylation (OP). If the given require a shuttle system, please indicate both MA shuttle and GP shuttle and give the ATP produced. Given: glucose 6-phosphate to 2succinly CoAIf K* and valinomycin are added to respiring cells, fully coupled ATP-synthesizing mitochondria, explain what will happen to the pH gradient and the AY. Compare the action of valinomycin with gramicidin in ATP production and electron transport.Give all the reactions that will produce ATP either by substrate-level phosphorylation (SLP) or by oxidative phosphorylation (OP). If the given require a shuttle system, please indicate both MA shuttle and GP shuttle and give the ATP produced. Given: fructose 6-phosphate to 2pyruvate
- Consider the following diagram when answering the questions about cellular respiration. (a) Label the diagram. (b) Considering the electron transport chain. Why type of cell transport is happening at the ETC? Explain. (c) What type of cell transport is happening at ATP synthase? Explain. B A D EWhich of the following is true for both aerobic and anaerobic cellular respiration? A B с D oxidation of FADH₂ to FAD reduction of FAD to FADH₂ oxidation of NADH to NAD + reduction of NAD * to NADHCyanide poisoning inhibits aerobic respiration at cytochrome c oxidase. Which of the following is NOT a result of cyanide poisoning at the cellular level? Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. a b с d e Oxygen is reduced to water The rate of glycolysis increases Cells are forced to switch to anaerobic respiration The electron transport chain is not completed None of the above Answered K Open in Reading View ✔Posubmit