"&e1=Glucose-6-phosphatase&e2=Phosphoglucose isomerase&e3=Fructose-1,6-biphosphatase&e4=Aldolase&e5=Triose-P isomerase&e6=Glyceraldehyde-3-phosphate dehydrogenase&e7=Phosphoglycerate kinase&e8=Phosphoglyceromutase&e9=Enolase&e10=Pyruvate carboxylase&e11=Phosphoenolpyruvate carboxykinase (PEPCK)&c1=&c2=&c3=&c4=&c5=&c6=&c7=Magnesium&c8=2,3-Bisphosphoglycerate&c9=&c10=Biotin and Acetyl CoA&c11=&k1=Glucose 6-phosphatase is a hydrolase.  Because inorganic phosphate is produced (not ATP), this reaction is energetically favorable.&k2=&k3=Fructose-1,6-biphosphatase is a hydrolase.  Because inorganic phosphate is produced (not ATP), this reaction is energetically favorable.&k4=These three carbon substrates are also used in fructose metabolism, the pentose phosphate shunt, and lipid metabolism.  This is an important intersection of pathways.&k5=Remember that this step effectively doubles all products shown.&k6=&k7=&k8=&k9=Inhibited by fluoride&k10=Acetyl CoA activates pyruvate carboxylase.  Therefore, high levels of acetyl CoA increase gluconeogenesis.&k11=Reaction usually occurs in cytosol&"
