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Fructose-bisphosphate aldolase (FBP-aldolase; EC 4.1.2.13) is a key glycolytic enzyme that catalyzes the reversible cleavage of fructose 1,6-bisphosphate to dihydroxyacetone phosphate (DHAP) and glyceraldehyde 3-phosphate (G3P). It plays an essential role in both glycolysis and gluconeogenesis, and is present in most organisms, with three main isozymes in vertebrates: Aldolase A (muscle and red blood cells), Aldolase B (liver, kidney, and small intestine), and Aldolase C (brain). Aldolase is divided mechanistically into class I (predominant in animals and plants, utilizing a Schiff base mechanism with an active-site lysine) and class II (bacterial and fungal, requiring a divalent metal ion such as zinc). Human diseases associated with aldolase deficiencies include hereditary fructose intolerance (aldolase B defect) and hemolytic anemia (aldolase A defect). In cancer, aldolase is often upregulated in the context of increased glycolysis (the Warburg effect). While the enzyme itself is not yet a major direct drug target in human medicine, its homologs in pathogens are being investigated for antimicrobial development.
Enzyme inhibition (blocking glycolytic or gluconeogenic activity) Inhibitors often act on the active site (lysine/schiff base, or metal ion binding for class II enzymes)
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