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- Saccharides: Using the following substrates, estimate the net ATP yield after glycolytic pathway, Kreb’s cycle and electron transport chain. Assume that the estimate for ATP yield per mole of NADH is 3 moles of ATP, while 1 mole of FADH2 is equivalent to 2 moles of ATP, and one mole of GTP is equivalent to one mole of ATP. Show all pertinent solutions and determine: a) ATP used, b) ATP produced, and c) Net ATP. Based on your solutions, rank the substrates based on increasing yield of ATP Two moles of fructose-1,6-biphosphateSaccharides: Using the following substrates, estimate the net ATP yield after glycolytic pathway, Kreb’s cycle and electron transport chain. Assume that the estimate for ATP yield per mole of NADH is 3 moles of ATP, while 1 mole of FADH2 is equivalent to 2 moles of ATP, and one mole of GTP is equivalent to one mole of ATP. Show all pertinent solutions and determine: a) ATP used, b) ATP produced, and c) Net ATP. Based on your solutions, rank the substrates based on increasing yield of ATP 1. Three moles of glucose-6-phosphate 2. Four moles of pyruvic acidSaccharides: Using the following substrates, estimate the net ATP yield after glycolytic pathway, Kreb’s cycle and electron transport chain. Assume that the estimate for ATP yield per mole of NADH is 3 moles of ATP, while 1 mole of FADH2 is equivalent to 2 moles of ATP, and one mole of GTP is equivalent to one mole of ATP. Show all pertinent solutions and determine: a) ATP used, b) ATP produced, and c) Net ATP. Based on your solutions, rank the substrates based on increasing yield of ATP 1. Three moles of glucose-6-phosphate
- Saccharides: Using the following substrates, estimate the net ATP yield after glycolytic pathway, Kreb’s cycle and electron transport chain. Assume that the estimate for ATP yield per mole of NADH is 3 moles of ATP, while 1 mole of FADH2 is equivalent to 2 moles of ATP, and one mole of GTP is equivalent to one mole of ATP. Show all pertinent solutions and determine: a) ATP used, b) ATP produced, and c) Net ATP. Based on your solutions, rank the substrates based on increasing yield of ATP Five moles of Acetyl coenzyme AExplain the role and functioning of chaperone proteins. Explain, why several chaperones (chaperonins) possess an ATPase activity?1B. please help me in detail. Draw a graph of free energy G (y-axis) vs reaction progress (x-axis) that illustrates what the kinase is doing in terms of the free energy by showing (i) the substrate (also label what the substrate is [it’s name]), (ii) the products (also give the name of the products), (iii) draw and label the uncatalyzed and catalyzed reactions, and be sure that the parts of the graph are properly labeled..
- Discuss the mechanism cells employ to create a concentration gradient to ensure continual uptake of glucose from the bloodstream. Illustrate and Correlate the major Metabolic Pathways that are discussed. Label each pathway.True or false: F1 unit of ATP synthase is capable of synthesizing 3ATP molecules per a complete revolution. F1 unit can synthesize 4 or 5ATP molecules if the c subunit of F0 unit has more than 12 proton binding peptides. Unlike Complex I inhibitors, Complex IV inhibitors can shut down the entire ETC.Compare the allosteric regulation of phosphorylase in the liver and in muscle, and explain the significance of the difference.
- Scheme of galactose catabolism. Enzymopathiesname and explain the model that most likely accounts for cooperativity in enzymeNADH Also indicate why this is the most likely model.In full details. Define 'activation energy' of an enzyme catalysed single substrate reaction and mention the effects of an enzyme on this energy.