Chemistry help with c, d, e, and i.
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- In the complete b-oxidation of stearic acid (18:0), a) how many moles of acetyl CoA are produced? b) how many times would the fatty acid pass through the fatty acid spiral for complete oxidation? c) what is the total ATP produced in the citric acid cycle? d) how many moles of NADH are produced? e) how many moles of FADH2 are produced? f) how many moles of ATP are produced after all NADH are reoxidized in the respiratory chain? g) how many moles of ATP are produced after all FADH2 are reoxidized in the respiratory chain? h) how many moles of ATP are produced from the complete oxidation of stearic acid?1. What citric acid cycle intermediate is produced from the 3 carbon propionyl-CoA product formed in the last round of fatty acid oxidation? Propionyl-CoA is formed in the fınal oxidation round of fatty acids with an odd # of carbons. a) oxaloacetate b) alpha-ketoglutarate c) citrate d) succinyl-CoAD) Carbohydrate catabolism involves substrate-level phosphorylation. E) My answer is not here 27. The adduct acetoacetyl-acyl carrier protein is formed as an intermediate during fatty acid biosynthesis. The CO2 used to synthesize malonyl-S-CoA is lost. Would this help make the reaction more or less energetically favorable? A) Loss of CO2 increases entropy (AS) and therefore decreases the favorability of the reaction (AG). B) Loss of CO2 has no effect on entropy (AS) and therefore does not affect the favorability of the reaction (AG). C) Loss of CO2 increases entropy (AS) and therefore increases the favorability of the reaction (AG). D) Loss of CO2 decreases entropy (AS) and therefore decreases the favorability of the reaction (AG). E) Loss of CO2 decreases entropy (AS) and therefore increases the favorability of the reaction (AG).
- The krebs cycle has 8 enzymes: citrate synthase, aconitase, isocitrate dehyrogenase, a-ketoglutarate dehydrogenase, succinyl –CoA synthease, succinate dehyrogenase, fumarase and malate dehyrogenase. a)Write name the cofactors required by each enzyme reaction. b)For each enzyme determine which of the following deascribes the type of reactions catalyzed: condensation (Carbon-carbon bond formation), dehydration (Loss of water), hydration (addition of water), decarboxylation (loss of CO2), oxidation-reduction; subsrate level phospohorylation; isomerization.To oxidize the fatty acid molecule shown below, what enzyme(s) are needed in addition to the enzymes needed for beta - oxidation? A) 2,4- dienoyl-CoA reductase only B) enoyl-CoA isomerase only C) both enoyl-CoA isomerase and 2,4- dienoyl-CoA reductase D) No additional enzymes are needed besides the normal ones for beta - oxidation. CH3(CH2)3-CH=CH-(CH2)3-C-0° поThe immediate precursor to acetyl–CoA from glycolysis is pyruvate.a) Write the pathway (not the mechanism) for the series of steps for this conversion. Includestructures for all coenzymes and reactants for each step.b) Discuss the mechanistic advantages offered by this multienzyme complex. Be specific and giveexamples.c) The last step of the reaction, catalyzed by enzyme 3, includes three coenzymes and oxidation.Write the mechanism for this enzyme.
- Consider the fatty acids: (a) Arachidic acid (C20H40O2); molar mass = 312.5 g/mol) (b) Palmitoleic acid(C16H30O2); molar mass = 256.4 g/mol). i. How many cycles of β -oxidation are needed for complete oxidation?ii. How many molecules of acetyl CoA are formed from its complete catabolism?iii. Calculate the number of molecules (moles) of ATP formed (net) by the completecatabolism of each fatty acid (show your calculation).iv. Calculate number of moles of ATP formed per gram of each fatty acid metabolized.10a) Outline the mechanism for the conversion of alpha-ketoglutarate to succinyl-CoA which is catalyzed by alpha-ketoglutarate dehydrogenase. b) Of the five steps involved with this process, which would most likely be metabolically irreversible under physiological conditions?1) Humans do not undergo net synthesis of carbohydrate from acetyl- CoA, yet carbons of acetyl -CoA can be incorporated into glucose and amino acids. Show pathways as to how this can happen. 2) A molecule -X inhibits oxidation of stearoyl-CoA by isolated mitochondria but has no effect on palmitoyl-carnitine oxidation, explain.
- Each of the following citric acid cycle enzymes catalyzes electron transfer to NADH/FADH2 except A) isocitrate dehydrogenase. B) α-ketoglutarate dehydrogenase. C) succinyl CoA synthetase. D) succinate dehydrogenase. E) malate dehydrogenase.Complete the following paragraph describing the fate of the second 14CO-acetyl-CoA molecule incorporated into the glyoxylate cycle. The glyoxylate produced in the isocitrate reaction combines with a (A.) 2nd molecule of oxoaloacetate, B.) 2nd molecule of succinate, C.)2nd molecule of acetyl coa) in the malate synthase reaction. Malate is (A.Chiral, B.diasteromeoic C.)Achiral) ; therefore, the oxaloacetate produced from glyoxylate will be labeled at (A.Either of carboxylate carbon B. specifically at methylene carbon C. Specifically at carbonyl carbon D. Specifically at carboxylate carbon bonded to methylene).What enzyme is inhibited by Acetyl-CoA carboxylase? a)Acetyl-CoA carboxylase b)Citrate lyase c)E3 ubiquitin ligase d)Carnitine acyltransferase I