Title of article
Synthesis and pharmacological testing of polyaminoquinolines as blockers of the apamin-sensitive Ca2+-activated K+ channel (SKCa) Original Research Article
Author/Authors
David I. Fletcher، نويسنده , , C. Robin Ganellin، نويسنده , , Alessandro Piergentili، نويسنده , , Philip M. Dunn، نويسنده , , Donald H. Jenkinson، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
23
From page
5457
To page
5479
Abstract
The synthesis and pharmacological testing of a series of non-peptidic blockers of the SKCa (SK-3) channel is described. Target compounds were designed to mimic the spatial relationships of selected key residues in the energy-minimised structure of the octadecapeptide apamin, which are a highly potent blocker of this channel. Structures consist of a central unit, either a fumaric acid or an aromatic ring, to which are attached two alkylguanidine or two to four alkylaminoquinoline substituents. Potency was tested by the ability to inhibit the SKCa channel-mediated after-hyperpolarization (AHP) in cultured rat sympathetic neurones. It was found that bis-aminoquinoline derivatives are significantly more potent as channel blockers than are the corresponding guanidines. This adds to the earlier evidence that delocalisation of positive charge through the more extensive aminoquinolinium ring system is important for effective channel binding. It was also found that an increase in activity can be gained by the addition of a third aminoquinoline residue to give non-quaternized amines which have submicromolar potencies (IC50 = 0.13–0.36 μM). Extension to four aminoquinoline residues increased the potency to IC50 = 93 nM.
Keywords
Ketonucleosides , Unsaturated nucleosides , Olefination , Antiviral , Exomethylene nucleosides , Anti-tumor activity
Journal title
Bioorganic and Medicinal Chemistry
Serial Year
2007
Journal title
Bioorganic and Medicinal Chemistry
Record number
1305943
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