Fructose Sucrose Q1 - Glucose -ATP Glycolysis Dihydroxyacetone phosphate ADP Glucose 6-phosphate Fructose 6-phosphate -ATP ADP Fructose 1,6-bisphosphate Glyceraldehyde 3-phosphate P, NAD NADH 1,3-bisphosphoglycerate -ADP ATP 3-phosphoglycerate 2-phosphoglycerate H₂O Phophoenolpyruvate ADP ATP pyruvate
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- Handwritten Identify the molecule names, enzyme name, enzyme classification and change in reaction(for glycolysis pathway)In class, I mentioned that fructose is metabolized differently in the liver compared to glucose. Refer to the figure shown below to calculate the number ofATPs you would expect from the metabolism of fructose in the liver. Show your work! Fructokinase Fructose Fructose-1-P АТР ADP Aldolase B Dihydroxy- acetone phosphate Glyceraldehyde АТР Triose kinase Triose phosphate isomerase ADP 4 - Glyceraldehyde-3-P Glycolysis Руruvate Acetyl-CoA Fatty acids and triglyceridesWhich reaction below in the glycolytic pathway has a highly unfavorable delta Gº' but a favorable delta G under physiological conditions? 1,3-Bisphosphoglycerate + ADP3-Phosphoglycerate + ATP O2-phosphoglyerate → phosphoenolpyruvate Ofructose-1,6-bisphosphate dihydroxyacetone phosphate + glyceraldehyde-3-phosphate Ofructose-6-phosphate → fructose-1,6-bisphosphate
- Please select appropriate word in each bracket Glycogen provides short term energy storage primarily in liver and muscle. Defects in the enzymes that are required for either glycogen synthesis or breakdown therefore affect levels of [ Select ] ["glucose", "glycogen"] in the bloodstream and the amount of glycogen in the liver. This is exemplified by defects in [ Select ] ["glucose-6-phosphatase", "glycogen synthase"] , which is a deficit in breakdown and delivery, whereas mutations compromising [ Select ] ["glycogen synthase", "glycogen debranching enzyme"] result in a defect in synthesis, but defects in either enzyme produce [ Select ] ["hypoglycemia", "hypothermia"].The coenzyme NAD+ is required for which glycolytic reaction shown below? Oglyceraldehyde-3-P→ 1,3-bisphosphoglycerate glucose glucose-6-P fructose-6-P→ fructose-1,6-BP 2-phosphoglycerate → phosphoenolpyruvateEnergetic of Fructose-1 ,6-bis P Hydrolysis (Integrates with Chapter 3.) The standard free energy change (G) for hydrolysis of fructose-1. 6-bisphosphate (FBP) to fructose-S-phosphate (F-6-P) and P: is -16.7 KJ/mol: FBP + H2O fructose-6-P + Pi The standard free energy change (G) for ATP hydrolysis is -30.5 KJ/mol: ATP + H2O ADP + Pj What is the standard free energy change for the phosphofructokinase reaction: ATP + fructose-6-P ADP + FBP b. What is the equilibrium constant for this reaction? c. Assuming the intracellular concentrations of [ATP] and (ADP] are maintained constant at 4 mM and 1.6 mM, respectively, in a rat liver cell, what will be the ratio of [FBP]/[fructose-6-P] when the phosphofructokinase reaction reaches equilibrium?
- Choose the enzyme and cofactors involved in the reaction of fructose-1,6-bisphosphate to fructose-6-phosphate in gluconeogenesis. H H-TOPO Fo HOTH HDH HOH MOTOPOP K E H-TOH H OPO Problem 3 of 17 A B Q D E fructose-1,6-bisphosphatase phosphoglucose isomerase glucose-6-phosphatase phosphoglycerate kinase hexokinaseAcetyi CoA Oxaloncetate CoA NADH Citrate NAD Isocitrate Malate Funiarate NAD co NADH FADH, FAD a- Ketoghutarate Succinate co, NAD+ ATP Succinyl CuA NADH ADP - P For each molecule of glucose (C6H12O6) oxidized by cellular respiration, how many moles of CO2 are released in the citric acid cycle? (see the figure above) а. 2 b. 4 с. 6 d. 0 е. 3HANDOUT C Glucose-6 Phosphate Dehydrogenase and TPI Deficiencies Glucose-6-P GSH + GSH Reduced glutathione 2 H+ NADP+ H₂O₂ Hydrogen peroxide Glucose-6-phosphate dehydrogenase Superoxide radical NADPH + H+ 6-Phosphogluconolactone GSSG Glutathione Oxidized reductase Glutathione peroxidase Aerobic respiration, drugs, fava beans glutathione 2 H₂O Detoxification SOD: superoxide dismutase GPx: glutathione peroxidase HK: hexokinase GSSG and GSH: glutathione, oxidized and reduced forms, respectively CAT: catalase The diagram above gives important details about the HMP shunt. Superoxides/free radicals dis- rupt membrane lipids, causing changes in membrane permeability. The HMP shunt is expressed in liver cells, red blood cells, and in lipid-producing tissues. 1. Discuss how glycolysis is affected in G6PD patients, using the diagrams to explain your response. 2. How does this effect differ from TPI patients? 3. Why are red blood cells, but not the nervous system, affected in G6PD patients?
- How many ATP are produced from the complete degradation of 1,3-bisphosphoglycerate? the complete degradation of ONE glucose using the malate-aspartate shuttle as your guide.Triacylglycerols in adipose tissue do not enter the bloodstream as triacyglycerolsexplainWhat is the advantage for some tumors to stop expressing the genes for glucose-6-phosphatase, phosphoenolpyruvate carboxykinase, and fructose bisphosphatase?