| Literature DB >> 25369775 |
Felix T Kern1, Klaus T Wanner.
Abstract
The objective of the present study was to transfer the concept of library screening by MS binding assays, so far applied to pseudostatic hydrazine libraries, to static oxime libraries to screen for new potent inhibitors of mGAT1, the most abundant GABA transporter in the central nervous system that represents a validated drug target for the treatment of epilepsy. Library generation was performed by reaction of guvacine derivatives possessing a hydroxylamine functionality with various sets of four aldehydes. After dilution, the libraries were screened by competitive MS binding assays. Deconvolution experiments allowed hits in the most active libraries to be identified, and they were resynthesized for biological evaluation. That way a series of compounds was identified that displayed binding affinities ≥8.00 (pKi ) at mGAT1, one of which was found to be the most potent mGAT1 inhibitor known to date in a functional GABA uptake assay with a pIC50 value of 8.27 ± 0.03.Entities:
Keywords: binding assays; dynamic combinatorial chemistry; mass spectrometry; membrane proteins; oximes
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Year: 2014 PMID: 25369775 DOI: 10.1002/cmdc.201402376
Source DB: PubMed Journal: ChemMedChem ISSN: 1860-7179 Impact factor: 3.466