Question 33 Match the enzyme with its cellular location. Succinate dehydrogenase [Choose ] [ Choose ] Phosphoenolpyruvate carboxykinase (PEPCK) Ribosome Inner mitochondrial membrane Glucose-6-Phosphatase Nucleus ume Mitochondrial matrix Hexokinase Cytosol
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Q: Question 50 Of the total amounts of ATP produced by the citric acid cycle, what percentage is…
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Q: QUESTION 1 Quantitativey, the primary reason that aerobic metabolism results in production of so…
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Q: Question 25 ATP inhibits glycolysis O True O False
A: Glycolysis is also known as Embden mayerhof pathway. Glycolysis occur in fed state to break the…
Q: Question 11 (1 point) Which of the following statements regarding the synthesis of ATP by the…
A: The correct option is AReducing equivalent (NADH,FADH2)and oxygen must be present .
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Q: QUESTION 23 A C16:0 fatty acid will undergo Oa. 8 round(s) of B-oxidation Ob.1 Oc 18 Od.7
A: Introduction: The biochemical process involving the breakdown of fatty acids for the production of…
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Q: Question 61 Which of the following statements in correct? ladin Anaerobic fermentation produces more…
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Q: QUESTION 17 Cellular respiration is composed of several different stages. a) Name the different…
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Q: QUESTION 2 The NAD+/NADH ratio in liver cells is compared to muscle. This favors the reaction O Low;…
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Q: Question 18 One of the end products of aerobic respiration is water. Where did the oxygen come from…
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Q: Question 14 In addition to ATP, what are the end products of glycolysis? CO2 and FADH2 CO2 and NADH…
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Q: QUESTION 3 Pyruvate carboxylase is allostenically activated by the presence of acetyl-CoA. Glucagon…
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Q: Question 24 Which of the following are biolegical functions of the citric acid cycle? O Completing…
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Q: QUESTION 4 Which of the following components of the electron transport system does NOT transport…
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Q: The role of oxygen gas in our cells is to accept electrons that come from NADH. produce…
A: Cellular respiration is the process by which organisms break down glucose into adenosine…
Q: Question 23 2 pts As it turns out, arsenic is a competitive inhibitor of pyruvate dehydrogenase.…
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Q: QUESTION 29 Which of the following actions is not characteristic of the slow phase of oxygen debt? O…
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Q: Question 36 In the TCA cycle, carbon enters the cycle as and exits as with metabolic energy captured…
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Q: QUESTION 36 None of the first five steps in glycolysis is oxidative. O True O False
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Q: Question 18 In a photosynthetic cell undergoing cell expansion and growth involving active synthesis…
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Q: QUESTION 2 Oxidation of NADH and FADH2 in the electron transport system are similar in that: (read…
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Q: QUESTION 17 Which of the followings can be used as the starting point of gluconeogenesis? O a.…
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Q: Question 8 Complete the sentences about the cellular respiration steps. Glycolysis and the citric…
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- Based on the image below select the correct statements Intermembrane space Inner mitochondrial membrane NADH NAD+ Proton pump ATP synthase ADP + P₁ verifier-SGorLXZ61a39Ecjya7yr5Yf3404XUmXKRi3wHy13 ATP Mitochondrial matrix https://canvas.uts.edu.au/assessment questions/356921/files/1562662/download?2 of 50 1-4. IHO OKO ONDO OX 31 H₂C-O 1. HC-O- H₂C-O O=O= 0= JONDO 3. \ 4. write your answer here 2. Following lipase-mediated separation of the three fatty acids, they are each activated through attachment to CoA and transported into the mitochondrial matrix. What is the expected total yield of ATP following complete ß-oxidation of the fatty acid labelled 3 in the image within the mitochondrial matrix? (Your answer should be a number, without any other text. E.g.: 2) I (Note, the fatty acid is already within the mitochondrial matrix. You should only consider the ATP yield from the direct steps of B-oxidation as well as that of the citric acid cycle and oxidative phosphorylation.) 00 [SPS Date: Page No. A pulse af 13-14c] of pyruate con tans 4c) js methylgiaup. added toa do0lated mitachondria. Prruiate (the 'Riuspension of solated mitochondoria Aften (Q ane tuen of c gcid cycle, which canlion co e (ore) labeled in Daaloocetate? he citri'c loore) labeledin Draw f caid crle infermedictes t shau hene the labreled the structures ALL the cetrec tohone canban ie ih erch one. (t How needed to nelecse caribon many tong the Gycle would te Eycle,Wou all the labeled as 1"cog? Explain your answer.
- The Relative Efficiency of ATP Synthesis in Noncyclic versus Cyclic Photophosphorylation If noncyclic photosynthetic electron transport leads to the translocation of 7 H+/2e- and cyclic photosynthetic electron transport leads to the translocation of 2 H+/e-, what is the relative photosynthetic efficiency of ATP synthesis (expressed as the number of photons absorbed per ATP synthesized) for noncyclic versus cyclic photophosphorylation? (Assume that the CF1CF0-ATP synthase yields 3 ATP/14 H+.)GTP or ATP is produced during the conversion of isocitrate into ketoglutarate succinyl CoA into succinate fumarate into malate malate into oxaloacetatepH and in the Chloroplast Proton-Motive Force (Integrates with Chapter 20.) In mitochondria, the membrane potential () contributes relatively more to p (proton-motive force) than does the pH gradient (pH). The reverse is true in chloroplasts. Why do you suppose that the proton-motive force in chloroplasts can depend more on pH than mitochondria can? Why is () less in chloroplasts than in mitochondria?
- Assessing the Effect of Active-Site Phosphorylation on Enzyme Activity (Integrates with Chapter 15.) The serine residue of isocitrate dehydroenase that is phosphorylated by protein kinase lies within the active site of the enzyme. This situation contrasts with most other examples of coa1ent modification by protein phosphorylation. where the phosphorylation occurs at a sate remote from the active site. What direct effect do you think such active-site phosphorylation might have on the catalytic activity of isocitrate dehydrogcn.ise? (Sec Barford, D., 1991. Molecular mechanisms for the control of enzymic activity by protein phosphorytation. Biochimica et Biophysica Acta 1133:55—62.)MON TRANSPORT CHAIN Intermembrane Space 3 ACP Mitochondrial Matrix FADH FAD Copyrighs 0200n Benmin Cummings an impii s Addson identify the importance to keep the electrons (e-) running through the electron transport chain. The electrons move to and join with ADP to form ATP Electron movement causes the body to take in axygen. The electrons will flow through ATP Synthase in order to make ATP The energy of the moving electrons will power the transport of H+ to the intermembrane space. Next Previous 0042/quizzes/36067/take Test 3 Supply the missing enzymes/product that is labelled with white box and number. ALL ANSWER MUST BE ON LOWERCASE FORM E.i (argininosuccinate synthetase) 1. Mitochondrial matrix Omithtne transcarbamoylase Ornithine Transfer Citrulline Transport system Transport system 2 Hydrolysis Condensation Aspartate Urea ATP HO AMP 21 Cleavage Cytosol OL口 e
- A mitochondrial matrix protein is maintained in its unfolded state by a chaperone protein before transport across the mitochondrial membrane true falseAvailable after Oct 27 at 12:50pm Club @HesGoal.Com Spor 021/2022 ements The diagram shows molecules that a mitochondrion uses and produces during a cellular process. ents Cellular Process in the Mitochondrion ns H,0 Co, Pyruvate ibrary Tracker Which other molecule is a product of this process? O RNA O ATP Remind O CH12O5 O DNA Four Calculatorrgy Conversions ite / Unit 2 - The Cell anaeroblc respiration 11) To complete this Venn Diagram, label the following differences and similarities as A (aerobic), B (common to both) or C (anaerobic). with oxygen 2 ATP B convert energy 38 ATP Aerobic Respiration Anaerobic Respiration without oxygen W 12) Matching.