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0025078940
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A transcriptional enhancer essential for the expression of the rat cholecystokinin gene contains a sequence identical to the ±296 element of the human c-fos gene
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Regulation of cholecystokinin secretion from a rat thyroid medullary carcinoma cell line: Role of calcium, cyclic nucleotides, glucocorticoids, neurotensin, and calcitonin gene-related peptide
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[3] Beinfeld, M.C., Haun, R.S., Allard, L.R. and Dixon, J.E., Regulation of cholecystokinin secretion from a rat thyroid medullary carcinoma cell line: role of calcium, cyclic nucleotides, glucocorticoids, neurotensin, and calcitonin gene-related peptide, Peptides, 13 (1992) 545-590.
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CCK mRNA expression, pro-CCK processing, and regulated secretion of immunoreactive CCK peptides by rat insulinoma (RIN 5F) and mouse pituitary tumor (AtT-20) cells in culture
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[4] Beinfeld, M.C., CCK mRNA expression, pro-CCK processing, and regulated secretion of immunoreactive CCK peptides by rat insulinoma (RIN 5F) and mouse pituitary tumor (AtT-20) cells in culture. Neuropeptides, 22 (1992) 213-217.
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A mouse intestinal tumor cell line, STC-1, expresses CCK, PC1, and PC2 mRNA, processes pro CCK to CCK 8, and displays cAMP regulated release
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[5] Yoon, J.Y. and Beinfeld, M.C., A mouse intestinal tumor cell line, STC-1, expresses CCK, PC1, and PC2 mRNA, processes pro CCK to CCK 8, and displays cAMP regulated release. Endocrinology, 2 (1994) 973-977.
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6
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Vasoactive intestinal polypeptide (VIP) inhibits potassium-induced release of cholecystokinin (CCK) from rat caudato-putamen (cp) but not from cerebral cortex
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[6] Allard, L.R. and Beinfeld, M.C., Vasoactive intestinal polypeptide (VIP) inhibits potassium-induced release of cholecystokinin (CCK) from rat caudato-putamen (cp) but not from cerebral cortex, Neuropeptides. 8 (1986) 287-293.
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Allard, L.R.1
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7
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0023885419
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Phorbol esters stimulate the potassium-induced release of cholecystokinin from slices of cerebral cortex, caudato-putamen, and hippocampus incubated in vitro
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[7] Allard, L.R. and Beinfeld, M.C., Phorbol esters stimulate the potassium-induced release of cholecystokinin from slices of cerebral cortex, caudato-putamen, and hippocampus incubated in vitro, Biochem. Biophys. Res. Commun., 153 (1988) 372-376.
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Allard, L.R.1
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8
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0024999271
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Inhibition of potassium-evoked release of cholecystokinin (CCK) from rat caudato-putamen, cerebral cortex, and hippocampus incubated in vitro by phencyclidine (PCP) and related compounds
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[8] Allard, L.R., Brog, J.S., Viereck, J.C., Contreras, P.C., Johnson, A.E., Rice, K.C. and Beinfeld, M.C., Inhibition of potassium-evoked release of cholecystokinin (CCK) from rat caudato-putamen, cerebral cortex, and hippocampus incubated in vitro by phencyclidine (PCP) and related compounds. Brain Res., 522 (1990) 224-226.
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9
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0025103029
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Inhibition of carbachol-induced inositol phosphate accumulation by PCP, PCP-like ligands, and sigma agonists involves blockade of the muscarinic cholinergic receptor: A novel dioxadrol-preferring interaction
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[9] Brog, J.M. and Beinfeld, M.C., Inhibition of carbachol-induced inositol phosphate accumulation by PCP, PCP-like ligands, and sigma agonists involves blockade of the muscarinic cholinergic receptor: a novel dioxadrol-preferring interaction, J. Pharmacol. Exp. Ther., 254 (1990) 952-956.
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0026571198
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Cholecystokinin release from the rat caudate-putamen, cortex, and hippocampus is increased by activation of the D1 dopamine receptor
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[10] Brog, J.S. and Beinfeld, M.C., Cholecystokinin release from the rat caudate-putamen, cortex, and hippocampus is increased by activation of the D1 dopamine receptor, J. Pharmacol. Exp. Ther., 260 (1992) 343-348.
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11
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0023276252
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Lithium preincubation stimulates the potassium-induced release of cholecystokinin from slices of cerebral cortex and caudato-putamen incubated in vitro
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[11] Gysling, K., Allard, L.R. and Beinfeld, M.C., Lithium preincubation stimulates the potassium-induced release of cholecystokinin from slices of cerebral cortex and caudato-putamen incubated in vitro, Brain Res., 413 (1987) 365-367.
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The regulation of cholecystokinin release from rat caudato-putamen in vitro
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Modulation of cholecystokinin release from posterior nucleus accumbens by D-2 dopamine receptor
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[13] Martin, J.R., Beinfeld, M.C. and Wang, R.Y., Modulation of cholecystokinin release from posterior nucleus accumbens by D-2 dopamine receptor. Brain Res., 397 (1986) 253-258.
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Martin, J.R.1
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14
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0002163765
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CCK/Gastrin
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F.E. Bloom and D. Kupfer (Eds.), The Fourth Generation of Progress, Raven Press. New York, NY
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15
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0019497036
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The distribution of cholecystokinin in the central nervous system of the rat as determined by radioimmunoassay
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[15] Beinfeld, M.C., Meyer, D.K., Eskay, R.L., Jensen, R.T. and Brownstein, M.J., The distribution of cholecystokinin in the central nervous system of the rat as determined by radioimmunoassay, Brain Res., 212 (1981) 51-57.
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16
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0028239912
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GTPases: Multifunctional molecular switches regulating vesicular traffic
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