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Affinity isolation of imidazoline binding proteins from rat brain using 5-amino-efaroxan as a ligand
L K Monks1, K E Cosgrove, M J Dunne
1Cellular Pharmacology Group, School of Life Sciences, Keele University, Staffordshire, UK.
Abstract:
We have employed an amino derivative of the imidazoline ligand, efaroxan, to isolate imidazoline binding proteins from solubilised extracts of rat brain, by affinity chromatography. A number of proteins were specifically retained on the affinity column and one of these was immunoreactive with an antiserum raised against the ion conducting pore component of the ATP-sensitive potassium channel. Patch clamp experiments confirmed that, like its parent compound, amino-efaroxan blocks ATP-sensitive potassium channels in human pancreatic beta-cells and can stimulate the insulin secretion from these cells. The results reveal that a member of the ion conducting pore component family is strongly associated with imidazoline binding proteins in brain and in the endocrine pancreas.