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Behavior of rat hypothalamic and extrahypothalamic immuno-reactive TRF in thin-layer chromatography (TLC) and high pressure liquid chromatography (HPLC)
Authors:Amal Mukherjee  G. Snyder  S.M. McCann
Affiliation:1. Department of Internal Medicine University of Texas Health Science Center at Dallas 5323 Harry Hines Boulevard Dallas, Texas 75235, USA;7. Department of Physiology University of Texas Health Science Center at Dallas 5323 Harry Hines Boulevard Dallas, Texas 75235, USA
Abstract:[3H] quinuclidinyl benzilate (QNB), a specific muscarinic antagonist, was utilized to identify muscarinic cholinergic receptors on dispersed anterior pituitary cells. Scatchard analysis of [3H] QNB binding to receptors departs from linearity with upward concavity. A high affinity binding site having a dissociation constant (Kd) of 1.5 nM was observed when the [3H] QNB concentration was varied from 0.15 to 20 nM. A low affinity binding site (Kd 20 nM) was observed when [3H] QNB concentration was above 20 nM. Using 10 nM [3H] QNB for binding, the second order association rate constant (k1) of 0.064 nM?1 min?1 and first order dissociation rate constant (k2) of 0.078 min?1(T12 8 min) were observed. k2/k1 = Kd of 1.22 nM is in good agreement with Kd = 1.5 nM from equilibrium data. Muscarinic cholinergic receptor antagonists, atropine and scopolamine, and agonist oxtoremorine potently competed with [3H] QNB binding. A nicotinic cholinergic receptor agonist was 50 times less potent as a competitor of [3H] QNB binding than the muscarinic agonist.
Keywords:To whom correspondence and requests for reprints should be addressed
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