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- By what mechanisms is ethanol eliminated from the blood? Discuss the chemistry of these processes (oxidation/reduction, gas solubility, etc.) in detail, as well as the toxicity consequences.1 a) What is meant by the ATP currency exchange ratio? Why does the oxidation of mitochondrial FADH2 generate one less ATP than oxidation of mitochondrial NADH? b) If 12 H+ are moved across the inner mitochondrial membrane by NADH oxidation, and each ATP synthesized requires 3 H+ to move through ATP synthase, why are only 3 ATP molecules produced by oxidation of each NADH?A. What would be the effect of barbiturate abuse on oxidative phosphorylation ? B. What is the biochemical basis of carbon monoxide fatility?
- In the complete b-oxidation of stearic acid (18:0) How many moles of FADH2 are produced? How many moles of ATP are produced after all NADH are reoxidized in the respiratory chain? How many moles of ATP are produced after all FADH2 are reoxidized in the respiratorychain? How many moles of ATP are produced from the complete oxidation of stearic acid?Given the overall equation for respiration (C6H12O6 + 6O2 6CO2 + 6H2O), in which step(s) in the respiratory pathway is/are each of the reactants used up and each of the products made? Photosynthetic reactions require NADPH while NADH is involved in aerobic respiration. These two molecules regulate both the biosynthetic and the catabolic activity of the cell. Explain how they do this. Note that NAD+ kinase phosphorylates NAD+ to produce NADPH+.Describe the effects of (1) oligomycin and (2) uncouplers of oxidative phosphorylation, e.g., dinitrophenol (DNP), carbonyl cyanide-p- trifluoromethoxyphenylhydrazone (FCCP), on respiration and ATP synthesis when added to a suspension of mitochondria with excess malate, ADP, and inorganic phosphate (Pi).
- Propose a mechanism for the Co2 + catalyzed hydrolysis of glycinamide.Briefly describe the role that phosphofructokinase plays in cellular respiration. Describe the impact a lack of phosphofructokinase would have on cellular respiration and one sign and/or symptom that may be present in someone who suffers from this disorder.Under standard conditions, is the oxidation of ubiquinol (Coenzyme Q) by O2 sufficiently exergonic to drive the synthesis of ATP? If yes, how many ATP can be synthesized assuming 100% efficiency?
- In a Lineweaver-Burk graph, the lines representing the uninhibited and inhibited enzyme catalyzed reaction meet each other on the x-axis. The type of inhibition which is occurring is: a) competitive b) noncompetitive c) uncompetitive d) allosteric CO2 exerts direct activity upon hemoglobin by: a) blocking oxygen from binding to the heme group b) displacing BPG from the central cavity c) oxidizing Fe+2 to Fe+3 which does not bind oxygen d) forming an N-terminal carbamate which favors the T-state The dominant motif found in hemoglobin and myoglobin is: a) helix-turn-helix b) twisted beta sheet c) beta barrel d) random coil Which of these is an ketohexose? a) fructose b) glucose c) ribose d) erythrose Which of these is a constitutional isomer of d-glucose? a) fructose b) galactose c) l-glucose d) ribose Which of these is an enantiomer of d-glucose? a) d-fructose b) d- galactose c) l-glucose d) d-ribose Which of these is a diastereomer of…Hemoglobin is the oxygen carrier in the blood. What is the effect of each of the following treatments on the oxygen affinity of hemoglobin in vitro and how do these changes impact the T state vs. R state of the enzyme? A) Decrease in pH from 7.4 to 7.2. B) Increase in 2,3-BPG concentration.The standard reduction potential for ubiquione (A or coenzyme Q) is .045 V, and the standard reduciton potential (E) for FAD is -0.219 V. Using these values, show that the oxidation for FADH2 by ubiquinone theoretically liberates enough energy to drive the synthesis of ATP. Faraday constant =96.48KJ/Vol delta G' standard for ATP Synthesis is +30.5 KJ/mol R=8.314 J/mol K=1.987 cal/mol K