PEP ADP Pyruvate. + ATP Pyruvate Pi PEP+. H2O AG 14.8 Kcal/mol ATP. + H2O-> ADP. + Pi. AG 7 Kcal/mol
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Under anerobic conditions how many ATP molecules will be produced when 3.5 moles of Glucose are being consumed?
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- Energetics of the Hexokinase Reaction The standard-state free energy change. Gfor the hexokinase reaction, is — 1 6.7 kJ/mol. Use the values in Table I to calculate the value of Gfor this reaction in the erythrocyte at 37°C.Effects of Changing Metabolite Concentrations on Glycolysis In an erythrocyte undergoing glycolysis what would be the effect of a sudden increase in the concentration of a. AΤP? b. AMP? c. fructose-1.6-bisphosphate? d. fructose-2, 6-bisphosphate? e. citrate? f. glucose-6-phospthate?AG" = -69.5 kJ · mol- The percent efficiency of oxidative phosphorylation is 35%. Calculate the number of ATP generated by Complex I. Use 1 significant figure. The amount of ATP generated by Complex I is mol ATP. The equation for the overall reaction that occurs in Complex I is shown as: NADH + H+ + Q = NAD+ + QH2 Please explain! Thank you so much..
- ATP ADF R D Match the structure given with the name. Acetyl coenzyme A pyruvate Complex V of the electron transport - oxidative phosphorylation pathway. ATP Synthase Mitochondrion FAD COA not shown D с B AI. ATP Calculation A. Given that three molecules of glucose underwent full oxidation, how many of the following is produced in each phase? Show your solutions. Glycolysis NADH FADH₂ ATP NADH FADH2 A B C ATP (Substrate Level) SUM TOTAL J K D E [1] F Pyruvate Oxidation F If this happens in the liver, how many ATPs will be synthesized if all NADH and FADH₂ entered ETC.. Total number L M N G H I O Kreb's Cycle ATP Produced3. Fates of pyruvate. Pyruvate has several metabolic fates (some of which you'll learn later) but in anerobic conditions pyruvate has two outcomes. a. For these anerobic outcomes of pyruvate draw the reactions with names and structures of the reactants and products. Please name the enzymes and cofactors necessary. b. During strenuous activity, the demand for ATP in muscle tissue is vastly increased. In rabbit leg muscle or turkey flight muscle, the ATP is produced almost exclusively by lactic acid fermentation. ATP is formed in the payoff phase of glycolysis by two reactions, promoted by phosphoglycerate kinase and pyruvate kinase. Suppose skeletal muscle were devoid of lactate dehydrogenase. Could it carry out strenuous physical activity; that is, could it generate ATP at a high rate by glycolysis? Explain.
- stion 20 vet ered s out of g question Below is an image of how biotin is used in the reaction that converts pyruvate to oxaloacetate, an important metabolic reaction. The overall reaction is: Bicarbonate + ATP + pyruvate -> Oxaloacetate + ADP Which statement below is correct regarding biotin? xx-00 HO Bicarbonate HẠT NH Biotin Enz ATP Enol pyruvate ADP 2. NH Enz Carboxybiotin coo CIO CH₂ cooo Oxaloacetate HN NH Biotin O a. Biotin is a cofactor that serves as a reducing agent and is important for the generation of collagen O b. Biotin is a prosthetic group where the nitrogen serves as an electrophile and bicarbonate is a nucleophile O C Biotin is a cofactor that is covalently linked to the enzyme; the enzyme is a ligase6. Malate dehydrogenase catalyzes the following reversible reaction: COO- HO-C-H CH₂ COO™ L-Malate NAD+ y malate NADH + H+ dehydrogenase COO- 0=C CH₂ COO™ Oxaloacetate AG'° = 29.7 kJ/mol Malate + NAD+→NADH + H+ + oxaloacetate Calculate AG" and the ratio or products and reactants for the malate dehydrogenase reaction to proceed from left to right as shown. (The Faraday constant. 3, is 96.48 kJ/V-mol; RT(37°C)= 2.58kJ/mol) Steps: 1. Explain how you determined which molecule is an electron donor Malate and which is an acceptor NAD*. -2- 2. Calculate AED (write equation, then show calculations, for standard reduction potentials (E_values) see table in the posted lecture) 3. Calculate AG (write equation, then show calculations) 4. Calculate the ratio of products and reactants needed to for Malate + NAD+→→NADH + H+ + oxaloacetate reaction to proceed forward (write equation, then show calculations)Question 8: The following table shows the glycolysis reactions and their standard Gibbs free energy changes at 25 C. Answer the following questions: A. What is the Gibbs free energy expression of the glycolysis pathway? B. What is the overall reaction of the glycolysis pathway? C. Suppose that the physiological concentrations of some metabolites are known as follows:
- 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+.)Calculate AGo' for the reaction NADH + pyruvate → NAD+ + lactate You are given: Faradays constant F = 96.5 kJ/mol.V Eo' : NAD+ / NADH = 0.320V Eo' : Pyruvate/lactate = -0.185 V A. 13 kJ/mol В. 97 k j/mol С. 49 kJ/mol D. 26 k j/mol Е. None of the above B.Carbonic anhydrase catalyzes the hydration of CO. CO2 + H2O ¬ H½CO3 The Km of this enzyme for CO, is 1.20×104 µ.M. When [CO,] = 3.60×104 µM, the rate of reaction was 4.50 umol·mL! sec-1 a What is Vmax for this enzyme? umol·mL-!sec-!