Rate limiting step in HMP shunt -
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- Indicate the general type of enzyme that mediates each glycolysis reaction depicted below. (e.g. Transferase, Oxidoreductase, Kinase, Hydrolase, Lyase, or Isomerase) iii. O H Glyceraldehyde-3-phosphate → 1,3-Bisphosphoglycerate H-C-OH + NAD CH₂O-P + P₁ H-O- -C-H Glucose →→ Glucose-6-phosphate H b 0 OH HO OH H-C- 0 -H HO- H ОН H-C-OH + NADH +H+ CH₂O P P ATP ADP 1 H (P-O- -C- H H HO OH 2-Phosphoglycerate → Phosphoenolpyruvate 0 OH H ОН -O~(P) + HOHThe table lists the standard free energies (AG°') of hydrolysis of some phosphorylated compounds. Compound Phosphoenolpyruvate (PEP) 1,3-Bisphosphoglycerate (1,3-BPG) Creatine phosphate ATP (to ADP) Glucose 1-phosphate Pyrophosphate (PP;) Glucose 6-phosphate Glycerol 3-phosphate kJ mol-¹ -61.9 -49.4 -43.1 -30.5 -20.9 -19.3 -13.8 -9.2 kcal mol-1 -14.8 -11.8 -10.3 -7.3 -5.0 -4.6 -3.3 -2.2In which of the following metabolic conversions is ATP “generated” during glycolysis? Glucose —> Glucose-6-phosphate 1,3-Bisphosphoglycerate —> 3-Phosphoglycerate Fructose-1,6-bisphosphate —> Dihydroxyacetone phosphate + Glyceraldehyde-3-phosphate Glucose-6-phosphate —> Fructose-6-phosphate 2-Phosphoglycerate —> 3-Phosphoglycerate
- Specify the number of carbon atoms present and the number of phosphate groups present in each of the following glycolysis intermediates (3 points each) 1. Glucose 6 phosphate 2. Fructose 1, 6, phosphate 3. Glyceraldehyde 3-phosphate 4. 3-phospholglycerate 5. Fructose 6 phosphateThe glucose/glucose-6-phosphate substrate cycle involves distinct reactions of glycolysis and gluconeogenesis that interconvert these two metabolites. Assume that under physiological conditions, [ATP] = [ADP]; [P;] = 1 mM. Consider the glycolytic reaction catalyzed by hexokinase: ATP + glucose ADP + glucose-6-phosphate AG = - 16.7 kJ/mol (a) Calculate the equilibrium constant (K) for this reaction at 298°K, and from that, calculate the maximum [glucose-6-phosphate]/ Iglucose] ratio that would exist under conditions where the reaction is still thermodynamically favorable. (b) Reversal of this interconversion in gluconeogenesis is catalyzed by glucose-6-phosphatase: glucose-6-phosphate + H20 = glucose + P AG" = -13.8 kJ/molWhich reaction is irreversible? oxidized glutathione + NADPH + H+ → reduced glutathione + NADP+ ribulose 5-phosphate → ribose 5-phosphate glucose 6-phosphate + NADP+ → 6-phosphoglucono-δ-lactone + NADPH + H+ sedoheptulose 7-phosphate + glyceraldehyde 6-phosphate → fructose 6-phosphate + erythrose 4-phosphate ribulose 5-phosphate → xylulose 5-phosphate
- Handwritten Identify the molecule names, enzyme name, enzyme classification and change in reaction(for glycolysis pathway)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 → phosphoenolpyruvateWhat would be the effect (promotes glycolysis or gluconeogenesis) of a sudden increase in the concentration of (a) [ATP] ↑ (b) [AMP] ↑ (c) [fructose-1,6-bisphosphate] ↑
- please show DETAILED mechanism and I will upvote: biotin carboxylase Ö— NH N-carboxyblotin O-C-OH + ATP bicarbonate16. The overall reaction for the glycolysis reaction is C6H₁2O6(aq) + 2NAD+ (aq) + 2ADP³(aq) + 2HPO(aq) + 2H₂O(1) 2CH3COCO₂ (aq) + 2NADH(aq) + 2ATP4 (aq) + 2H3O+ (aq). What is A,G at chemical equilibrium?Identify the structure of the metabolites below, and name their glycolytic enzyme and metabolic step: Glucose 6-phosphoglucose 1-phosphoglucose Fructose 1-, 6-biphosphofructose Phosphoenol pyruvate 2-phosphoglycerate 3-phosphoglycerate Lactate o Pyruvate