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- Question 1 Which of the following statements is true regarding compounds of the TCA cycle resulting from introduction into the TCA cycle of Glutamate labeled in the R group carboxyl carbon transaminated to a-Ketoglutarate and taken through one complete round back to Succinyl CoA? Multiple answers: Multiple answers are accepted for this question Select one or more answers and submit. For keyboard navigation. SHOW MORE V a After one complete round Succinyl CoA will be radioactive. b The labeled R group carboxyl of Glutamate will be released as radioactive carbon dioxide. The transfer of Acetyl-CoA to Oxaloacetate will be result in radioactive Citric Acid. d A possible source of radioactive carbon dioxide is the Isocitrate Dehydrogenase reaction. e A possible source of radioactive carbon dioxide is the a-Ketoglutarate Dehydrogenase reaction. f No released carbon dioxide is radioactive. If taken through two complete rounds Succinyl CoA produced will be radioactive. h The carbon of the…There are eighteen (18) rows of boxes, for around 36-38 boxes total. Please see images attached. This is a pathway trace, with the final box showing "ribose 5 phosphate" as the end product. Any help is appreciated-thank you! glutamate to ribose 5 phosphate No a ketoglutarate dehydrogenase No pyruvate carboxylase No transketolase No transaminase You do get to have if needed: erythrose 4 phosphate asparate dihydroxyacetone phosphate bicarbonate ATP ornithine CO2Question 9 If 14CO2 (radioactive carbon) were incorporated into the TCA cycle via the Pyruvate Carboxylase reaction which of the following molecules would contain radioactive carbon? O Multiple answers: Multiple answers are accepted for this question Select one or more answers and submit. For keyboard navigation. SHOW MORE V a Oxaloacetate b Citric acid Isocitric acid d a-Ketoglutarate e Succinyl-CoA f Succinate Fumarate h Malate
- Fatty acid biosynthesis involves what sequence of reactions? Question 17 options: condensation → oxidation → reduction → dehydration condensation → oxidation → oxidation → hydration condensation → reduction → dehydration → reduction condensation → reduction → reduction → dehydrationComplete the interrelated pathways by choosing the necessary metabolite, enzyme, coenzyme, reaction, and metabolic pathway. UDP- glucose 1- phosphate glucose-6- phosphate ribulose S-phosphate glucose 4. reduced coenzyme glycogen Ala 1. pathway 2. metabolite Pyruvate Glu 3. enzyme 7. reaction NH. 5. pathway ATP + HCO. acetyl CoA +3cetcacetate oxaloacetate 6 final oxidized product fumarate auraruuo & pathway citrullinePls answer. - 1. How many ATP can be produced if the fatty acid palmitoleic acid is completely oxidized to produce energy? (Assume that all the acetyl CoA will enter the TCA Cycle). Write your solution on a piece of paper and attached it with your answer here.
- CHOOSE THE CORRECT LETTER 1.What kind of reaction is catalyzed by hexokinase?A. oxidationB. reductionC. phosphorylationD. isomerization 2.Which of the following reaction types are NOT found in glycolysis?A. phosphorylationB. reductionC. oxidationD. isomerization 3.What type of reaction is catalyzed by glyceraldehyde-3-phosphate dehydrogenase?A.phosphorylationB.reductionC. isomerizationD. oxidationPart A Using abbreviations (not structures), write the reaction of coenzyme A that gives off energy (-AG). Match the items in the left column to the appropriate blanks in the equation on the right. CoA+ acetate acetyl acetyl CoA. COA acetyl Previous Answers Request Answer Submit Reset HelpHow many more acetyl CoA are generated from stearic acid than from linoleic acid during beta oxidation? Enter numerical answer only
- oson wil save this rnsponse. Question 11 Put these steps in order in glycolysis phosphohexose isomerase pyruvate kinase hexokinase triose phosphate isomeraseQuestion 5 (1 point) Which of the following sequences correctly describes the overall process of metabolizing glucose? Pyruvate oxidation, Krebs cycle, glycolysis, electron transport, oxidative phos- phorylation Oxidative phosphorylation, Krebs cycle, pyruvate oxidation, glycolysis, electron transport Glycolysis, pyruvate oxidatioơn, Krebs cycle, electron transport, oxidative phosphorylation O Krebs cycle, oxidative phosphorylation, glycolysis, electron transport, pyruvate oxidationQuestion 1. Put away your notes and text and draw the complete Calvin-Benson cycle starting from 3molecules of Ru1,5BP. Show stoichiometry along the way using 6 GAP molecules to regeneratethe 3 Ru1,5BPs. Label each reaction according to its enzyme class (your choices arecarboxylase, kinase, dehydrogenase, aldolase, epimerase, isomerase, phosphatase, andtransketolase – see the posted enzyme guide for help on this).