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The identification of inhibitory compounds of Rickettsia prowazekii methionine aminopeptidase for antibacterial applications
- Source :
- Bioorganicmedicinal chemistry letters. 28(8)
- Publication Year :
- 2017
-
Abstract
- Methionine aminopeptidase (MetAP) is a dinuclear metalloprotease responsible for the cleavage of methionine initiator residues from nascent proteins. MetAP activity is necessary for bacterial proliferation and is therefore a projected novel antibacterial target. A compound library consisting of 294 members containing metal-binding functional groups was screened against Rickettsia prowazekii MetAP to determine potential inhibitory motifs. The compounds were first screened against the target at a concentration of 10 µM and potential hits were determined to be those exhibiting greater than 50% inhibition of enzymatic activity. These hit compounds were then rescreened against the target in 8-point dose–response curves and 11 compounds were found to inhibit enzymatic activity with IC50 values of less than 10 µM. Finally, compounds (1–5) were docked against RpMetAP with AutoDock to determine potential binding mechanisms and the results were compared with crystal structures deposited within the PDB.
- Subjects :
- 0301 basic medicine
Clinical Biochemistry
Protein Data Bank (RCSB PDB)
Pharmaceutical Science
Inhibitory postsynaptic potential
Cleavage (embryo)
Biochemistry
Article
Small Molecule Libraries
03 medical and health sciences
chemistry.chemical_compound
Catalytic Domain
Drug Discovery
Methionyl Aminopeptidases
Protease Inhibitors
Rickettsia prowazekii
Molecular Biology
Enzyme Assays
chemistry.chemical_classification
Metalloproteinase
Methionine
biology
Organic Chemistry
AutoDock
biology.organism_classification
Anti-Bacterial Agents
Molecular Docking Simulation
030104 developmental biology
Enzyme
chemistry
Metalloproteases
Molecular Medicine
Subjects
Details
- ISSN :
- 14643405
- Volume :
- 28
- Issue :
- 8
- Database :
- OpenAIRE
- Journal :
- Bioorganicmedicinal chemistry letters
- Accession number :
- edsair.doi.dedup.....968842bfef6568f69ad63537ecfe2265