Back to Search
Start Over
Kinetic Characterization and Molecular Docking of a Novel, Potent, and Selective Slow-Binding Inhibitor of Human Cathepsin L
- Source :
- Molecular Pharmacology
- Publication Year :
- 2008
- Publisher :
- American Society for Pharmacology & Experimental Therapeutics (ASPET), 2008.
-
Abstract
- A novel small molecule thiocarbazate (PubChem SID 26681509), a potent inhibitor of human cathepsin L (EC 3.4.22.15) with an IC(50) of 56 nM, was developed after a 57,821-compound screen of the National Institutes of Health Molecular Libraries Small Molecule Repository. After a 4-h preincubation with cathepsin L, this compound became even more potent, demonstrating an IC(50) of 1.0 nM. The thiocarbazate was determined to be a slow-binding and slowly reversible competitive inhibitor. Through a transient kinetic analysis for single-step reversibility, inhibition rate constants were k(on) = 24,000 M(-1)s(-1) and k(off) = 2.2 x 10(-5) s(-1) (K(i) = 0.89 nM). Molecular docking studies were undertaken using the experimentally derived X-ray crystal structure of papain/CLIK-148 (1cvz. pdb). These studies revealed critical hydrogen bonding patterns of the thiocarbazate with key active site residues in papain. The thiocarbazate displayed 7- to 151-fold greater selectivity toward cathepsin L than papain and cathepsins B, K, V, and S with no activity against cathepsin G. The inhibitor demonstrated a lack of toxicity in human aortic endothelial cells and zebrafish. In addition, the thiocarbazate inhibited in vitro propagation of malaria parasite Plasmodium falciparum with an IC(50) of 15.4 microM and inhibited Leishmania major with an IC(50) of 12.5 microM.
- Subjects :
- Stereochemistry
Cathepsin L
Plasmodium falciparum
Protein Data Bank (RCSB PDB)
Cysteine Proteinase Inhibitors
Crystallography, X-Ray
Sensitivity and Specificity
Article
Inhibitory Concentration 50
chemistry.chemical_compound
Papain
Animals
Humans
Binding site
Aorta
Cells, Cultured
Leishmania major
Pharmacology
Cathepsin
Binding Sites
Molecular Structure
biology
Endothelial Cells
Active site
Hydrogen Bonding
Cathepsins
Molecular biology
Small molecule
In vitro
Cysteine Endopeptidases
Kinetics
Models, Chemical
chemistry
biology.protein
Molecular Medicine
Endothelium, Vascular
Hydrophobic and Hydrophilic Interactions
Protein Binding
Subjects
Details
- ISSN :
- 15210111 and 0026895X
- Volume :
- 74
- Database :
- OpenAIRE
- Journal :
- Molecular Pharmacology
- Accession number :
- edsair.doi.dedup.....0a8be86ce21d21f821885042d4b3b6de
- Full Text :
- https://doi.org/10.1124/mol.108.046219