Dihydroxyacetone phosphate, which was formed along with the formation of phosphoglyceraldehyde during the breaking of fructose 1,6-bisphosphate. Both of these triose sugars are capable of isomerizing into either forms, and hence DHAP gets isomerized into G3P. This reaction activity is under the control of enzyme triose-phosphate-isomerase. And then the DHAP is converted into G3P, which can now contribute in the formation of pyruvic acid.
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Similar ideas to 5. DiHydroxyAcetonePhosphate Isomerization to PGAL.
The 1,3-BPG hence obtained from the partial oxidation of G3P undergoes substrate-level phosphorylation. An inorganic phosphate is released by the substrate named 1,3-BPG which is taken by an ADP molecule and hence results in the formation of an ATP molecule.
This 1,3-BPG gets now converted...
The phosphoenolpyruvate obtained is now under the activity of enzyme pyruvatekinase and is converted into pyruvic acid along with the formation of an ATP as a premium-product.
The 3-phosphoglyceric acid hence obtained is now mutated to form 2-phosphoglyceric acid by the activity of enzyme mutase.
The position of phosphate is changed from 3rd carbon to 2nd carbon for the formation of Phosphoenolpyruvate.
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