Independent in vitro regulation by the D-2 dopamine receptor of dopamine-stimulated efflux of cyclic AMP and K+-stimulated release of acetylcholine from rat neostriatum
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[1] W. Zeman. The Rat Drain. A Stereotaxic Atlas , 1964 .
[2] B. Katz,et al. The role of calcium in neuromuscular facilitation , 1968, The Journal of physiology.
[3] P. Greengard,et al. Dopamine-sensitive adenylate cyclase in caudate nucleus of rat brain, and its similarity to the "dopamine receptor". , 1972, Proceedings of the National Academy of Sciences of the United States of America.
[4] V. Nickolson,et al. Preferential release of newly synthesized 3H‐acetylcholine from rat cerebral cortex slices in vitro , 1973, British journal of pharmacology.
[5] S. Snyder,et al. Release of acetylcholine from hippocampal slices by potassium depolarization: dependence on high affinity choline uptake. , 1974, Brain research.
[6] P. Greengard,et al. Adenosine 3',5'-Monophosphate Content in Rat Caudate Nucleus: Demonstration of Dopaminergic and Adrenergic and Receptors , 1974, Science.
[7] V. Sethy,et al. Regulation of striatal acetylcholine concentration by dopamine receptors , 1974, Nature.
[8] V. Sethy,et al. Regulation of striatal acetylcholine concentration by dopamine receptors. , 1979, Nature.
[9] P. Kelly,et al. Dopamine-like effects of cholera toxin in the central nervous system , 1975, Nature.
[10] J. C. Stoof,et al. Calcium-dependent release of radiolabeled catecholamines and serotonin from rat brain synaptosomes in a superfusion system , 1975, Brain Research.
[11] P. Mcgeer,et al. Immunohistochemical localization of choline acetyltransferase containing neostriatal neurons and their relationship with dopaminergic synapses , 1976, Brain Research.
[12] P. Hadházy,et al. The effect of cholinergic drugs on [3H]acetylcholine release from slices of rat hippocampus, striatum and cortex , 1977, Brain Research.
[13] D. Calne. Parkinsonism. Clinical and neuropharmacologic aspects. , 1978, Postgraduate medicine.
[14] W. Douglas,et al. Action potentials in gland cells of rat pituitary pars intermedia: inhibition by dopamine, an inhibitor of MSH secretion , 1978, The Journal of physiology.
[15] H. Sarau,et al. The central effects of a novel dopamine agonist. , 1978, European journal of pharmacology.
[16] A. Friedhoff,et al. Dopamine receptor-coupled modulation of the K+-depolarized overflow of 3H-acetylcholine from rat striatal slices: alteration after chronic haloperidol and alpha-methyl-p-tyrosine pretreatment. , 1979, Life sciences.
[17] J. Kebabian,et al. Multiple receptors for dopamine , 1979, Nature.
[18] J. Kebabian,et al. Release of α-Melanocyte-Stimulating Hormone from Dispersed Cells of the Intermediate Lobe of the Rat Pituitary Gland: Involvement of Catecholamines and Adenosine 3′,5′-Monophosphate , 1980 .
[19] J. T. Hackett,et al. Calcium rather than cyclic AMP as the physiological intracellular regulator of prolactin release. , 1980, Neuroendocrinology.
[20] F. Labrie,et al. Activity of two new potent dopaminergic agonists at the striatal and anterior pituitary levels , 1980, Neuropharmacology.
[21] J. Kebabian,et al. The Dopamine Receptor in the Intermediate Lobe of the Rat Pituitary Gland: Pharmacological Characterization , 1980 .
[22] W. Douglas,et al. Calcium component to action potentials in rat pars intermedia cells. , 1980, The Journal of physiology.
[23] J. Dowling,et al. Dopaminergic Mechanisms in the Teleost Retina , 1981, Journal of neurochemistry.
[24] J. C. Stoof,et al. Opposing roles for D-1 and D-2 dopamine receptors in efflux of cyclic AMP from rat neostriatum , 1981, Nature.
[25] J. Holmgren. Actions of cholera toxin and the prevention and treatment of cholera , 1981, Nature.
[26] G. Giannattasio,et al. Dopamine-inhibited adenylate cyclase in female rat adenohypophysis. , 1981, Life sciences.
[27] J. Kebabian,et al. Evidence that LY-141865 specifically stimulates the D-2 dopamine receptor , 1981, Nature.
[28] J. Kebabian,et al. Stimulation of a D-2 dopamine receptor in the intermediate lobe of the rat pituitary gland decreases the responsiveness of the beta-adrenoceptor: biochemical mechanism. , 1981, Endocrinology.
[29] J. Dowling,et al. Dopaminergic Mechanisms in the Teleost Retina , 1981, Journal of neurochemistry.
[30] J. C. Stoof,et al. D-2 dopamine receptor-mediated inhibition of adenylate cyclase activity in the intermediate lobe of the rat pituitary gland requires guanosine 5'-triphosphate. , 1982, Endocrinology.