Journal of Biological Chemistry · 1990 · 30 citations · 14 references
Medicinal ChemistryBiosynthesisMetalloenzyme DimerBiochemistryCellular EnzymologyNatural SciencesMedicineProteomicsSelective Cooperative InteractionsEnzyme CatalysisMetalloproteinPh DependenceStructure-function Enzyme KineticsCellular BiochemistryPharmacologyEnzymatic ModificationInhibitory ActivityDrug Discovery
The pH dependence of Ki for inhibition of prolidase by acetylproline, proline, and trans-1,2-cyclopentanedicarboxylate follows a different pattern in each case, although deprotonation of an enzymic functional group with a pKa value of 6.6 perturbs ligand binding in every instance. Results are most easily explained with prolidase active as a metalloenzyme dimer exhibiting selective cooperative interactions.
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Elijah Adams, Emil L. Smith · Journal of Biological Chemistry · 1952 · 76 citations · Full text
Human Erythrocyte Prolidase and Prolidase Deficiency
Fumio Endo, Ichiro Matsuda, Akinori Ogata et al. · Pediatric Research · 1982 · 63 citations · Full text