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Name the three processes circled, say where they occur/how they relate, and what their significant contribution is?
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- a Lactate dehydrogenase H H3C-C-COO- OH L-(+)-Lactase b Creatine kinase CH3 H₂N This is a(an) NH₂ Creatine + ATP Adenosine triphosphate This is a(an) ADP OOC-C-CH3 Adenosine diphosphate Pyruvate CH3 ON ồ Ò NH2 Y PhosphocreatineH H H-C-OH CH-Q HOOHH H OH Glucose H-C=O H-C-H H H-C=0 ATP ADP H-C-OH HO-C-H H-C-OH Н Pyruvate OH Hexokinase ATP ADP IVE pyruvate kinase H-C-O-P-0 Glucose 6-phosphate (PEP) GLYCOLYSIS H-C-O-P=O H-C-OHO-H-C-OHO kinase isomerase но Phosphoenolpyruvate H-C-OH ÇO ATP ADP HO-C-H H-C-OH HO-C-H Phosphofructo H-C-OH aldose H-C-OHỌ H-C-O-P-0 HO Fructose 1, 6-bisphosphate H-C-O-P=O H 6- Fructose 6-phosphate H H-C-O-P=O C=O 6- Fructose bisphosphate H-C-OHO ATP 9 H H-C-O-PO C=O o- HO-C-H Dihydroxyacetone phosphate H ADP Glyceraldehyde 3-phosphate dehydrogenase 2X Triose phosphate isomerase H c=0 H-C-OHO H-C-O-PO 3-phosphate Hỏ NAD + P NADH+H* -O-P=O Ó c=0 Glyceraldehyde N H-C-O-P-O Enolase H-OHO phosphoglycerates-C-O-P-0 phosphoglycerate HC-OHO kinase H H-C-O-P=O Ĥ 6- 2-Phosphoglycerate 3-Phosphoglycerate 1,3-BisphosphoglycerateSH CH2 CH2 NH This structure plays an important role in the synthesis of H CH3 c-CH,-CH,-N-C-c-c-CH2-O ö o ČH, H. 0-5-0- %3 H O glycogen from glucose 6-phosphate. O fatty acids from acetyl coenzyme A O glucose from pyruvate. O glyceraldehyde 3-phosphate from fructose. O ATP from ADP and inorganic phosphate.
- Handwritten Identify the molecule names, enzyme name, enzyme classification and change in reaction(for glycolysis pathway)The 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 -2.2Energetic 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?
- Based on your understanding of how glycine metabolism is associated with cancer cell proliferation, the following figure best illustrates which aspect specifically? CO2 aspartate formate оо -C 3 glutamins 9 glycine 8C --formate Glycine contributes to the biosynthesis of purines, where it contributes two carbon atoms and a nitrogen atom as part of the purine ring structure Glycine is a component of glutathionine and plays a critical role as the main antioxidant molecule Glycine fuels heme biosynthesis in the mitochondria Glycine has critical role in the cell's balance of NADP+/NADPH ratiosWrite the structure of each nucleotide-linked sugar in the pathway shown in FigureThe 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 → phosphoenolpyruvate
- Which of the following monosaccharide phosphates is NOT produced in the pentose phosphate pathway? O seduheptulose-7-phosphate O mannose-6-phosphate O ribose-5-phosphate O erythrose-4-phosphateSpecify 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 phosphateplease show DETAILED mechanism and I will upvote: biotin carboxylase Ö— NH N-carboxyblotin O-C-OH + ATP bicarbonate