Biopolymers · 1999 · 132 citations · 16 references
General Cysteine ProteasesBioorganic ChemistryAldo-keto ReductaseMolecular BiologyChemical BiologyMedicinal ChemistryStructural BasisStructure-function Enzyme KineticsProteomicsActive Site ResiduesInhibitory ActivityProtein ChemistryProtein FunctionAldehyde DehydrogenaseBiochemistryPharmacologyNatural SciencesEnzyme SpecificityProtein EngineeringCysteine ProteasesMedicineDrug Discovery
This paper focuses on the inhibitory mechanism of E-64 and its derivatives (epoxysuccinyl-based inhibitors) with some cysteine proteases, based on the binding modes observed in the x-ray crystal structures of their enzyme-inhibitor complexes. E-64 is a potent irreversible inhibitor against general cysteine proteases, and its binding modes with papain, actinidin, cathepsin L, and cathepsin K have been reviewed at the atomic level. E-64 interacts with the Sn subsites of cysteine proteases. Although the Sn-Pn (n = 1-3) interactions of the inhibitor with the main chains of the active site residues are similar in respective complexes, the significant difference is observed in the side-chain interactions of S2-P2 and S3-P3 pairs because of different residues constituting the respective subsites. E-64-c and CA074 are representative derivatives developed from E-64 as a clinical usable and a cathepsin B-specific inhibitors, respectively. In contrast with similar binding/inhibitory modes of E-64-c and E-64 for cysteine proteases, the inhibitory mechanism of cathepsin B-specific CA074 results from the binding to the Sn' subsite.
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Role of the Occluding Loop in Cathepsin B Activity
Chantal Illy, Omar Quraishi, Jing Wang et al. · Journal of Biological Chemistry · 1997 · 269 citations · Full text
Crystal structure of a papain-E-64 complex
Kottayil I. Varughese, F. R. Ahmed, Paul Carey et al. · Biochemistry · 1989 · 154 citations